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69					<title>TOPTICA Photonics SE - Narrow linewidth lasers - CLS</title>
70			<meta name="description" content="Industrial-grade ultra-stable lasers with low phase noise enable advanced quantum technologies that rely on narrow-linewidth clock transitions and therefore require laser systems with sub-Hz linewidth and high stability even in out-of-the lab conditions. TOPTICA’s ultra-stable “CLS” lasers yield highest frequency stability far beyond 1 second integration time to drive very narrow optical transitions in atoms like Yb, Sr or ions like Yb&amp;#43;, Sr&amp;#43;, Ca&amp;#43;, and Ba&amp;#43; or even in Th nuclei.TOPTICA´s CLS usually use external cavity diode lasers whose linewidth is reduced to less than 1 Hz via frequency-stabilization to high-finesse optical ULE cavities. For wavelengths below ~ 660 nm, the fundamental laser at higher wavelength is first stabilized to the ULE cavity and then frequency converted (SHG/FHG). Amplification is possible via ALS-IR low-noise fiber amplifiers or TA pro tapered amplifiers. Robust design, excellent passive shielding and active vibration compensation make the CLS resilient towards external acoustic and seismic vibrations. A high-end temperature stabilization system guarantees highest stability towards temperature fluctuations. The complete system is controlled with one DLC pro -hosted interface and can be accessed with the PC GUI TOPAS. " /><meta property="description" content="Industrial-grade ultra-stable lasers with low phase noise enable advanced quantum technologies that rely on narrow-linewidth clock transitions and therefore require laser systems with sub-Hz linewidth and high stability even in out-of-the lab conditions. TOPTICA’s ultra-stable “CLS” lasers yield highest frequency stability far beyond 1 second integration time to drive very narrow optical transitions in atoms like Yb, Sr or ions like Yb&amp;#43;, Sr&amp;#43;, Ca&amp;#43;, and Ba&amp;#43; or even in Th nuclei.TOPTICA´s CLS usually use external cavity diode lasers whose linewidth is reduced to less than 1 Hz via frequency-stabilization to high-finesse optical ULE cavities. For wavelengths below ~ 660 nm, the fundamental laser at higher wavelength is first stabilized to the ULE cavity and then frequency converted (SHG/FHG). Amplification is possible via ALS-IR low-noise fiber amplifiers or TA pro tapered amplifiers. Robust design, excellent passive shielding and active vibration compensation make the CLS resilient towards external acoustic and seismic vibrations. A high-end temperature stabilization system guarantees highest stability towards temperature fluctuations. The complete system is controlled with one DLC pro -hosted interface and can be accessed with the PC GUI TOPAS. " /><meta property="og:title" content="TOPTICA Photonics SE - Narrow linewidth lasers - CLS" /><meta property="og:description" content="Industrial-grade ultra-stable lasers with low phase noise enable advanced quantum technologies that rely on narrow-linewidth clock transitions and therefore require laser systems with sub-Hz linewidth and high stability even in out-of-the lab conditions. TOPTICA’s ultra-stable “CLS” lasers yield highest frequency stability far beyond 1 second integration time to drive very narrow optical transitions in atoms like Yb, Sr or ions like Yb&amp;#43;, Sr&amp;#43;, Ca&amp;#43;, and Ba&amp;#43;
70 or even in Th nuclei.TOPTICA´s CLS usually use external cavity diode lasers whose linewidth is reduced to less than 1 Hz via frequency-stabilization to high-finesse optical ULE cavities. For wavelengths below ~ 660 nm, the fundamental laser at higher wavelength is first stabilized to the ULE cavity and then frequency converted (SHG/FHG). Amplification is possible via ALS-IR low-noise fiber amplifiers or TA pro tapered amplifiers. Robust design, excellent passive shielding and active vibration compensation make the CLS resilient towards external acoustic and seismic vibrations. A high-end temperature stabilization system guarantees highest stability towards temperature fluctuations. The complete system is controlled with one DLC pro -hosted interface and can be accessed with the PC GUI TOPAS. " /><meta property="og:image" content="https://www.toptica.com/lasers/narrow-linewidth-lasers/CLS/product_TOPTICA_cls_main.webp" /><meta property="twitter:image" content="https://www.toptica.com/lasers/narrow-linewidth-lasers/CLS/product_TOPTICA_cls_main.webp" /><meta property="twitter:title" content="TOPTICA Photonics SE - Narrow linewidth lasers - CLS" /><meta property="twitter:description" content="Industrial-grade ultra-stable lasers with low phase noise enable advanced quantum technologies that rely on narrow-linewidth clock transitions and therefore require laser systems with sub-Hz linewidth and high stability even in out-of-the lab conditions. TOPTICA’s ultra-stable “CLS” lasers yield highest frequency stability far beyond 1 second integration time to drive very narrow optical transitions in atoms like Yb, Sr or ions like Yb&amp;#43;, Sr&amp;#43;, Ca&amp;#43;, and Ba&amp;#43; or even in Th nuclei.TOPTICA´s CLS usually use external cavity diode lasers whose linewidth is reduced to less than 1 Hz via frequency-stabilization to high-finesse optical ULE cavities. For wavelengths below ~ 660 nm, the fundamental laser at higher wavelength is first stabilized to the ULE cavity and then frequency converted (SHG/FHG). Amplification is possible via ALS-IR low-noise fiber amplifiers or TA pro tapered amplifiers. Robust design, excellent passive shielding and active vibration compensation make the CLS resilient towards external acoustic and seismic vibrations. A high-end temperature stabilization system guarantees highest stability towards temperature fluctuations. The complete system is controlled with one DLC pro -hosted interface and can be accessed with the PC GUI TOPAS. " /><meta property="og:site_name" content="TOPTICA Photonics SE" />
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139									CLS
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143											Clock laser system
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161								<div class="mt-10 text-claim md:text-claim-md lg:text-claim-lg font-[700] ">
162					<div>(Un-)lock the full potential of quantum technologies with ultra-stable laser systems</div>
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229											CLS
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233													Clock laser system
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244					<div>Industrial-grade ultra-stable lasers with low phase noise enable advanced quantum technologies that rely on narrow-linewidth clock transitions and therefore require laser systems with sub-Hz linewidth and high stability even in out-of-the lab conditions. TOPTICA’s ultra-stable “CLS” lasers yield highest frequency stability far beyond 1 second integration time to drive very narrow optical transitions in atoms like Yb, Sr or ions like Yb&#43;, Sr&#43;, Ca&#43;, and Ba&#43; or even in Th nuclei.<br />TOPTICA´s CLS usually use external cavity diode lasers whose linewidth is reduced to less than 1 Hz via frequency-stabilization to high-finesse optical ULE cavities. For wavelengths below ~ 660 nm, the fundamental laser at higher wavelength is first stabilized to the ULE cavity and then frequency converted (SHG/FHG). Amplification is possible via ALS-IR low-noise fiber amplifiers or TA pro tapered amplifiers. Robust design, excellent passive shielding and active vibration compensation make the CLS resilient towards external acoustic and seismic vibrations. A high-end temperature stabilization system guarantees highest stability towards temperature fluctuations. The complete system is controlled with one DLC pro -hosted interface and can be accessed with the PC GUI TOPAS. </div>
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504<section class="bg-background pt-[66px] md:pt-[60px] lg:pt-[110px]  "  id="benefits"  data-spacing-top="medium" data-spacing-bottom="large">
505	<div class="grid grid-cols-4 sm:grid-cols-12 container max-w-xs sm:max-w-xl md:max-w-3xl xl:max-w-7xl mx-auto gap-4 sm:gap-5 md:gap-6 py-4">
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518				
519		        Your Benefits
520        	</h2>
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544<div class=" bg-black flex flex-col gap-key-feature-sm sm:gap-key-feature-md px-8 sm:p-10 w-full lg:h-full relative py-8">
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547		<div class="text-key-feature-body-sm lg:text-key-feature-md font-bold text-balance">
548							Exceptional frequency stability (for elevated optical clock performance)
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551		<div class="text-key-feature-body-sm lg:text-key-feature-body-md   font-light">
552							<div>The CLS provides exceptional frequency stability to address optical narrow-linewidth transitions. </div>
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575							Industrial-grade quality and 19” rack integration option
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578		<div class="text-key-feature-body-sm lg:text-key-feature-body-md   font-light">
579							<div>The CLS is mounted in a metal-tray system, ensuring long-term stability, and can be housed in a TOPTICA 19&#34; rack. </div>
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602							Long coherence time for high qubit fidelity
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605		<div class="text-key-feature-body-sm lg:text-key-feature-body-md   font-light">
606							<div>Optical qubit coherence times of &gt;1s have already been demonstrated with the CLS.</div>
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629							All wavelengths / dual wavelengths
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633							<div>By using our well-established ECDL diode lasers together with our non-linear frequency conversion, we can offer all-in-one solutions from TOPTICA at many wavelengths, including 435 nm (Yb&#43;, CLS at 871 nm &#43; SHG), 578 nm (neutral Yb, CLS at 1156 &#43; SHG), 674 nm (Sr&#43;), 698 nm (neutral Sr), 729 nm (Ca&#43;), 1550 nm (DFC Core &#43; and Er&#43;) and 1762 nm (Ba&#43;), Even dual-wavelengths are possible, e.g. 840/1013nm.</div>
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680				
681		        Applications
682        	</h2>
683
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710		<div class="relative col-span-12 aspect-square md:aspect-[1.452/1] lg:aspect-video md:grid md:grid-cols-12 md:gap-6">
711		<div class="md:col-span-12">
712							<picture >
713	<source srcset="/_default_upload_bucket/154/image-thumb__154__application/PRELEMINARY%20-%20Optical%20quantum%20clocks~-~media--2247bc1a--query.f49e4489.webp 1x, /_default_upload_bucket/154/image-thumb__154__application/PRELEMINARY%20-%20Optical%20quantum%[email protected] 2x" media="(min-width: 1024px)" width="1295" height="728" type="image/webp" />
714	<source srcset="/_default_upload_bucket/154/image-thumb__154__application/PRELEMINARY%20-%20Optical%20quantum%20clocks~-~media--2247bc1a--query.f436110f.jpg 1x, /_default_upload_bucket/154/image-thumb__154__application/PRELEMINARY%20-%20Optical%20quantum%[email protected] 2x" media="(min-width: 1024px)" width="1295" height="728" type="image/jpeg" />
715	<source srcset="/_default_upload_bucket/154/image-thumb__154__application/PRELEMINARY%20-%20Optical%20quantum%20clocks~-~media--df42eb16--query.8470e9d8.webp 1x, /_default_upload_bucket/154/image-thumb__154__application/PRELEMINARY%20-%20Optical%20quantum%[email protected] 2x" media="(min-width: 768px)" width="700" height="482" type="image/webp" />
716	<source srcset="/_default_upload_bucket/154/image-thumb__154__application/PRELEMINARY%20-%20Optical%20quantum%20clocks~-~media--df42eb16--query.c872fd47.jpg 1x, /_default_upload_bucket/154/image-thumb__154__application/PRELEMINARY%20-%20Optical%20quantum%[email protected] 2x" media="(min-width: 768px)" width="700" height="482" type="image/jpeg" />
717	<source srcset="/_default_upload_bucket/154/image-thumb__154__application/PRELEMINARY%20-%20Optical%20quantum%20clocks.a6ecc50c.webp 1x, /_default_upload_bucket/154/image-thumb__154__application/PRELEMINARY%20-%20Optical%20quantum%[email protected] 2x" width="375" height="375" type="image/webp" />
718	<source srcset="/_default_upload_bucket/154/image-thumb__154__application/PRELEMINARY%20-%20Optical%20quantum%20clocks.7fc379f8.jpg 1x, /_default_upload_bucket/154/image-thumb__154__application/PRELEMINARY%20-%20Optical%20quantum%[email protected] 2x" width="375" height="375" type="image/jpeg" />
719	<img class="col-span-6 object-cover h-full w-full" src="/_default_upload_bucket/154/image-thumb__154__application/PRELEMINARY%20-%20Optical%20quantum%20clocks.7fc379f8.jpg" width="375" height="375" alt="" loading="lazy" srcset="/_default_upload_bucket/154/image-thumb__154__application/PRELEMINARY%20-%20Optical%20quantum%20clocks.7fc379f8.jpg 1x, /_default_upload_bucket/154/image-thumb__154__application/PRELEMINARY%20-%20Optical%20quantum%[email protected] 2x" />
720</picture>
721
722					</div>
723		<div class="absolute md:w-1/2 md:right-0 inset-0 bg-black/50 h-fit md:col-span-6 max-h-full">
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731<div class="  flex flex-col gap-key-feature-sm sm:gap-key-feature-md px-8 sm:p-10 w-full lg:h-full relative py-7">
732	
733	<div class="flex flex-col pr-6 text-white ">
734		<div class="text-key-feature-body-sm lg:text-key-feature-md font-bold text-balance">
735							Optical quantum clocks
736					</div>
737
738		<div class="text-key-feature-body-sm lg:text-key-feature-body-md hidden sm:block [&_div]:line-clamp-4 line-clamp-4 font-light">
739							<div>Welcome to the next generation of time and frequency metrology. Harnessing the full power of quantum physics and ultra-stable lasers, optical quantum clocks are redefining how we measure time...</div>
740					</div>
741	</div>
742
743			<div class="flex justify-end items-end mt-auto absolute right-7 w-5 h-5 md:relative md:w-auto md:h-auto md:right-0">
744						<a href="/applications/quantum-sensing-and-metrology/optical-quantum-clocks" class="inline-block hover:text-primary transition-colors" >
745				<svg width="30" height="30" viewBox="0 0 30 30" fill="none" xmlns="http://www.w3.org/2000/svg" class="w-full h-full object-contain object-center">
746
747<circle cx="15" cy="15" r="14.5" stroke="currentColor"/>
748<path d="M9 15L21 15" stroke="currentColor"/>
749<path d="M15 21L21 15L15 9" stroke="currentColor"/>
750</svg>
751
752			</a>
753		</div>
754	</div>
755
756                
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761	</div>
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767	</div>
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782		<div class="relative col-span-12 aspect-square md:aspect-[1.452/1] lg:
782aspect-video md:grid md:grid-cols-12 md:gap-6">
783		<div class="md:col-span-12">
784							<picture >
785	<source srcset="/applications/Quantum%20physics%20science/148/image-thumb__148__application/application_quantum-physics-science-w2560~-~media--2247bc1a--query.4fa65a02.webp 1x, /applications/Quantum%20physics%20science/148/image-thumb__148__application/application_quantum-physics-science-w2560~-~media--2247bc1a--query@2x.4fa65a02.webp 2x" media="(min-width: 1024px)" width="1295" height="728" type="image/webp" />
786	<source srcset="/applications/Quantum%20physics%20science/148/image-thumb__148__application/application_quantum-physics-science-w2560~-~media--2247bc1a--query.c28a24d1.png 1x, /applications/Quantum%20physics%20science/148/image-thumb__148__application/application_quantum-physics-science-w2560~-~media--2247bc1a--query@2x.c28a24d1.png 2x" media="(min-width: 1024px)" width="1295" height="728" type="image/png" />
787	<source srcset="/applications/Quantum%20physics%20science/148/image-thumb__148__application/application_quantum-physics-science-w2560~-~media--df42eb16--query.f3485cf8.webp 1x, /applications/Quantum%20physics%20science/148/image-thumb__148__application/application_quantum-physics-science-w2560~-~media--df42eb16--query@2x.f3485cf8.webp 2x" media="(min-width: 768px)" width="700" height="482" type="image/webp" />
788	<source srcset="/applications/Quantum%20physics%20science/148/image-thumb__148__application/application_quantum-physics-science-w2560~-~media--df42eb16--query.b157ba55.png 1x, /applications/Quantum%20physics%20science/148/image-thumb__148__application/application_quantum-physics-science-w2560~-~media--df42eb16--query@2x.b157ba55.png 2x" media="(min-width: 768px)" width="700" height="482" type="image/png" />
789	<source srcset="/applications/Quantum%20physics%20science/148/image-thumb__148__application/application_quantum-physics-science-w2560.4cab71c2.webp 1x, /applications/Quantum%20physics%20science/148/image-thumb__148__application/[email protected] 2x" width="375" height="375" type="image/webp" />
790	<source srcset="/applications/Quantum%20physics%20science/148/image-thumb__148__application/application_quantum-physics-science-w2560.7e113bbb.png 1x, /applications/Quantum%20physics%20science/148/image-thumb__148__application/[email protected] 2x" width="375" height="375" type="image/png" />
791	<img class="col-span-6 object-cover h-full w-full" src="/applications/Quantum%20physics%20science/148/image-thumb__148__application/application_quantum-physics-science-w2560.7e113bbb.png" width="375" height="375" alt="" loading="lazy" srcset="/applications/Quantum%20physics%20science/148/image-thumb__148__application/application_quantum-physics-science-w2560.7e113bbb.png 1x, /applications/Quantum%20physics%20science/148/image-thumb__148__application/[email protected] 2x" />
792</picture>
793
794					</div>
795		<div class="absolute md:w-1/2 md:right-0 inset-0 bg-black/60 h-fit md:col-span-6 max-h-full">
796			
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800                                    
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803<div class="  flex flex-col gap-key-feature-sm sm:gap-key-feature-md px-8 sm:p-10 w-full lg:h-full relative py-7">
804	
805	<div class="flex flex-col pr-6 text-white ">
806		<div class="text-key-feature-body-sm lg:text-key-feature-md font-bold text-balance">
807							Quantum physics science
808					</div>
809
810		<div class="text-key-feature-body-sm lg:text-key-feature-body-md hidden sm:block [&_div]:line-clamp-4 line-clamp-4 font-light">
811							<div>TOPTICA&#039;s products are widely and successfully used for scientific applications in fundamental quantum technology. In these fields quantum physics, quantum optics, atom optics, photonics, statistical physics and related fields are investigated in order to understand the basics of quantum technology.</div>
812					</div>
813	</div>
814
815			<div class="flex justify-end items-end mt-auto absolute right-7 w-5 h-5 md:relative md:w-auto md:h-auto md:right-0">
816						<a href="/applications/quantum-physics-science" class="inline-block hover:text-primary transition-colors" >
817				<svg width="30" height="30" viewBox="0 0 30 30" fill="none" xmlns="http://www.w3.org/2000/svg" class="w-full h-full object-contain object-center">
818
819<circle cx="15" cy="15" r="14.5" stroke="currentColor"/>
820<path d="M9 15L21 15" stroke="currentColor"/>
821<path d="M15 21L21 15L15 9" stroke="currentColor"/>
822</svg>
823
824			</a>
825		</div>
826	</div>
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828                
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855		<div class="md:col-span-12">
856							<picture >
857	<source srcset="/applications/Quantum%20computing%20and%20simulation/Atom%20quantum%20computing/138/image-thumb__138__application/application_atom-qt-computing-w2560~-~media--2247bc1a--query.9c2073ec.webp 1x, /applications/Quantum%20computing%20and%20simulation/Atom%20quantum%20computing/138/image-thumb__138__application/application_atom-qt-computing-w2560~-~media--2247bc1a--query@2x.9c2073ec.webp 2x" media="(min-width: 1024px)" width="1295" height="728" type="image/webp" />
858	<source srcset="/applications/Quantum%20computing%20and%20simulation/Atom%20quantum%20computing/138/image-thumb__138__application/application_atom-qt-computing-w2560~-~media--2247bc1a--query.51da7d68.png 1x, /applications/Quantum%20computing%20and%20simulation/Atom%20quantum%20computing/138/image-thumb__138__application/application_atom-qt-computing-w2560~-~media--2247bc1a--query@2x.51da7d68.png 2x" media="(min-width: 1024px)" width="1295" height="728" type="image/png" />
859	<source srcset="/applications/Quantum%20computing%20and%20simulation/Atom%20quantum%20computing/138/image-thumb__138__application/application_atom-qt-computing-w2560~-~media--df42eb16--query.c59ac361.webp 1x, /applications/Quantum%20computing%20and%20simulation/Atom%20quantum%20computing/138/image-thumb__138__application/application_atom-qt-computing-w2560~-~media--df42eb16--query@2x.c59ac361.webp 2x" media="(min-width: 768px)" width="700" height="482" type="image/webp" />
860	<source srcset="/applications/Quantum%20computing%20and%20simulation/Atom%20quantum%20computing/138/image-thumb__138__application/application_atom-qt-computing-w2560~-~media--df42eb16--query.d01e6589.png 1x, /applications/Quantum%20computing%20and%20simulation/Atom%20quantum%20computing/138/image-thumb__138__application/application_atom-qt-computing-w2560~-~media--df42eb16--query@2x.d01e6589.png 2x" media="(min-width: 768px)" width="700" height="482" type="image/png" />
861	<source srcset="/applications/Quantum%20computing%20and%20simulation/Atom%20quantum%20computing/138/image-thumb__138__application/application_atom-qt-computing-w2560.013ab1f3.webp 1x, /applications/Quantum%20computing%20and%20simulation/Atom%20quantum%20computing/138/image-thumb__138__application/[email protected] 2x" width="375" height="375" type="image/webp" />
862	<source srcset="/applications/Quantum%20computing%20and%20simulation/Atom%20quantum%20computing/138/image-thumb__138__application/application_atom-qt-computing-w2560.017e2fe2.png 1x, /applications/Quantum%20computing%20and%20simulation/Atom%20quantum%20computing/138/image-thumb__138__application/[email protected] 2x" width="375" height="375" type="image/png" />
863	<img class="col-span-6 object-cover h-full w-full" src="/applications/Quantum%20computing%20and%20simulation/Atom%20quantum%20computing/138/image-thumb__138__application/application_atom-qt-computing-w2560.017e2fe2.png" width="375" height="375" alt="" loading="lazy" srcset="/applications/Quantum%20computing%20and%20simulation/Atom%20quantum%20computing/138/image-thumb__138__application/application_atom-qt-computing-w2560.017e2fe2.png 1x, /applications/Quantum%20computing%20and%20simulation/Atom%20quantum%20computing/138/image-thumb__138__application/[email protected] 2x" />
864</picture>
865
866					</div>
867		<div class="absolute md:w-1/2 md:right-0 inset-0 bg-black/60 h-fit md:col-span-6 max-h-full">
868			
869
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872                                    
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875<div class="  flex flex-col gap-key-feature-sm sm:gap-key-feature-md px-8 sm:p-10 w-full lg:h-full relative py-7">
876	
877	<div class="flex flex-col pr-6 text-white ">
878		<div class="text-key-feature-body-sm lg:text-key-feature-md font-bold text-balance">
879							Atom quantum computing & simulation
880					</div>
881
882		<div class="text-key-feature-body-sm lg:text-key-feature-body-md hidden sm:block [&_div]:line-clamp-4 line-clamp-4 font-light">
883							<div>Atoms are excellent quantum systems for both quantum computing and quantum simulation. They can be ultimately controlled in all of their quantum states and even millions..</div>
884					</div>
885	</div>
886
887			<div class="flex justify-end items-end mt-auto absolute right-7 w-5 h-5 md:relative md:w-auto md:h-auto md:right-0">
888						<a href="/applications/quantum-computing-and-simulation/atom-quantum-computing-and-simulation" class="inline-block hover:text-primary transition-colors" >
889				<svg width="30" height="30" viewBox="0 0 30 30" fill="none" xmlns="http://www.w3.org/2000/svg" class="w-full h-full object-contain object-center">
890
891<circle cx="15" cy="15" r="14.5" stroke="currentColor"/>
892<path d="M9 15L21 15" stroke="currentColor"/>
893<path d="M15 21L21 15L15 9" stroke="currentColor"/>
894</svg>
895
896			</a>
897		</div>
898	</div>
899
900                
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927		<div class="md:col-span-12">
928							<picture >
929	<source srcset="/applications/Quantum%20computing%20and%20simulation/Ion%20quantum%20computing/139/image-thumb__139__application/application_ion-qt-computing-w2560~-~media--2247bc1a--query.f5f625b0.webp 1x, /applications/Quantum%20computing%20and%20simulation/Ion%20quantum%20computing/139/image-thumb__139__application/application_ion-qt-computing-w2560~-~media--2247bc1a--query@2x.f5f625b0.webp 2x" media="(min-width: 1024px)" width="1295" height="728" type="image/webp" />
930	<source srcset="/applications/Quantum%20computing%20and%20simulation/Ion%20quantum%20computing/139/image-thumb__139__application/application_ion-qt-computing-w2560~-~media--2247bc1a--query.f2fa5b3c.png 1x, /applications/Quantum%20computing%20and%20simulation/Ion%20quantum%20computing/139/image-thumb__139__application/application_ion-qt-computing-w2560~-~media--2247bc1a--query@2x.f2fa5b3c.png 2x" media="(min-width: 1024px)" width="1295" height="728" type="image/png" />
931	<source srcset="/applications/Quantum%20computing%20and%20simulation/Ion%20quantum%20computing/139/image-thumb__139__application/application_ion-qt-computing-w2560~-~media--df42eb16--query.6b610d75.webp 1x, /applications/Quantum%20computing%20and%20simulation/Ion%20quantum%20computing/139/image-thumb__139__application/application_ion-qt-computing-w2560~-~media--df42eb16--query@2x.6b610d75.webp 2x" media="(min-width: 768px)" width="700" height="482" type="image/webp" />
932	<source srcset="/applications/Quantum%20computing%20and%20simulation/Ion%20quantum%20computing/139/image-thumb__139__application/application_ion-qt-computing-w2560~-~media--df42eb16--query.5843f3c4.png 1x, /applications/Quantum%20computing%20and%20simulation/Ion%20quantum%20computing/139/image-thumb__139__application/application_ion-qt-computing-w2560~-~media--df42eb16--query@2x.5843f3c4.png 2x" media="(min-width: 768px)" width="700" height="482" type="image/png" />
933	<source srcset="/applications/Quantum%20computing%20and%20simulation/Ion%20quantum%20computing/139/image-thumb__139__application/application_ion-qt-computing-w2560.b49b4738.webp 1x, /applications/Quantum%20computing%20and%20simulation/Ion%20quantum%20computing/139/image-thumb__139__application/[email protected] 2x" width="375" height="375" type="image/webp" />
934	<source srcset="/applications/Quantum%20computing%20and%20simulation/Ion%20quantum%20computing/139/image-thumb__139__application/application_ion-qt-computing-w2560.9574d364.png 1x, /applications/Quantum%20computing%20and%20simulation/Ion%20quantum%20computing/139/image-thumb__139__application/[email protected] 2x" width="375" height="375" type="image/png" />
935	<img class="col-span-6 object-cover h-full w-full" src="/applications/Quantum%20computing%20and%20simulation/Ion%20quantum%20computing/139/image-thumb__139__application/application_ion-qt-computing-w2560.9574d364.png" width="375" height="375" alt="" loading="lazy" srcset="/applications/Quantum%20computing%20and%20simulation/Ion%20quantum%20computing/139/image-thumb__139__application/application_ion-qt-computing-w2560.9574d364.png 1x, /applications/Quantum%20computing%20and%20simulation/Ion%20quantum%20computing/139/image-thumb__139__application/[email protected] 2x" />
936</picture>
937
938					</div>
939		<div class="absolute md:w-1/2 md:right-0 inset-0 bg-black/60 h-fit md:col-span-6 max-h-full">
940			
941
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943
944                                    
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947<div class="  flex flex-col gap-key-feature-sm sm:gap-key-feature-md px-8 sm:p-10 w-full lg:h-full relative py-7">
948	
949	<div class="flex flex-col pr-6 text-white ">
950		<div class="text-key-feature-body-sm lg:text-key-feature-md font-bold text-balance">
951							Ion quantum computing  & simulation
952					</div>
953
954		<div class="text-key-feature-body-sm lg:text-key-feature-body-md hidden sm:block [&_div]:line-clamp-4 line-clamp-4 font-light">
955							<div>Ions are ideal qubits for quantum computing and simulation due to their excellent isolation and precise quantum-state control.<br />They are ionized, laser-cooled, and trapped in electromagnetic traps under ultra-high vacuum using specialized lasers and fields.</div>
956					</div>
957	</div>
958
959			<div class="flex justify-end items-end mt-auto absolute right-7 w-5 h-5 md:relative md:w-auto md:h-auto md:right-0">
960						<a href="/applications/quantum-computing-and-simulation/ion-quantum-computing-and-simulation" class="inline-block hover:text-primary transition-colors" >
961				<svg width="30" height="30" viewBox="0 0 30 30" fill="none" xmlns="http://www.w3.org/2000/svg" class="w-full h-full object-contain object-center">
962
963<circle cx="15" cy="15" r="14.5" stroke="currentColor"/>
964<path d="M9 15L21 15" stroke="currentColor"/>
965<path d="M15 21L21 15L15 9" stroke="currentColor"/>
966</svg>
967
968			</a>
969		</div>
970	</div>
971
972                
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978	
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999		<div class="md:col-span-12">
1000							<picture >
1001	<source srcset="/applications/Quantum%20physics%20science/Atom%20laser%20cooling%20and%20trapping/134/image-thumb__134__application/application_atom-Ion-cooling-w2560~-~media--2247bc1a--query.ba09b7d1.webp 1x, /applications/Quantum%20physics%20science/Atom%20laser%20cooling%20and%20trapping/134/image-thumb__134__application/application_atom-Ion-cooling-w2560~-~media--2247bc1a--query@2x.ba09b7d1.webp 2x" media="(min-width: 1024px)" width="1295" height="728" type="image/webp" />
1002	<source srcset="/applications/Quantum%20physics%20science/Atom%20laser%20cooling%20and%20trapping/134/image-thumb__134__application/application_atom-Ion-cooling-w2560~-~media--2247bc1a--query.faa4e629.png 1x, /applications/Quantum%20physics%20science/Atom%20laser%20cooling%20and%20trapping/134/image-thumb__134__application/application_atom-Ion-cooling-w2560~-~media--2247bc1a--query@2x.faa4e629.png 2x" media="(min-width: 1024px)" width="1295" height="728" type="image/png" />
1003	<source srcset="/applications/Quantum%20physics%20science/Atom%20laser%20cooling%20and%20trapping/134/image-thumb__134__application/application_atom-Ion-cooling-w2560~-~media--df42eb16--query.927624e8.webp 1x, /applications/Quantum%20physics%20science/Atom%20laser%20cooling%20and%20trapping/134/image-thumb__134__application/application_atom-Ion-cooling-w2560~-~media--df42eb16--query@2x.927624e8.webp 2x" media="(min-width: 768px)" width="700" height="482" type="image/webp" />
1004	<source srcset="/applications/Quantum%20physics%20science/Atom%20laser%20cooling%20and%20trapping/134/image-thumb__134__application/application_atom-Ion-cooling-w2560~-~media--df42eb16--query.d39f47a1.png 1x, /applications/Quantum%20physics%20science/Atom%20laser%20cooling%20and%20trapping/134/image-thumb__134__application/application_atom-Ion-cooling-w2560~-~media--df42eb16--query@2x.d39f47a1.png 2x" media="(min-width: 768px)" width="700" height="482" type="image/png" />
1005	<source srcset="/applications/Quantum%20physics%20science/Atom%20laser%20cooling%20and%20trapping/134/image-thumb__134__application/application_atom-Ion-cooling-w2560.1d74d1ec.webp 1x, /applications/Quantum%20physics%20science/Atom%20laser%20cooling%20and%20trapping/134/image-thumb__134__application/[email protected] 2x" width="375" height="375" type="image/webp" />
1006	<source srcset="/applications/Quantum%20physics%20science/Atom%20laser%20cooling%20and%20trapping/134/image-thumb__134__application/application_atom-Ion-cooling-w2560.34781b34.png 1x, /applications/Quantum%20physics%20science/Atom%20laser%20cooling%20and%20trapping/134/image-thumb__134__application/[email protected] 2x" width="375" height="375" type="image/png" />
1007	<img class="col-span-6 object-cover h-full w-full" src="/applications/Quantum%20physics%20science/Atom%20laser%20cooling%20and%20trapping/134/image-thumb__134__application/application_atom-Ion-cooling-w2560.34781b34.png" width="375" height="375" alt="" loading="lazy" srcset="/applications/Quantum%20physics%20science/Atom%20laser%20cooling%20and%20trapping/134/image-thumb__134__application/application_atom-Ion-cooling-w2560.34781b34.png 1x, /applications/Quantum%20physics%20science/Atom%20laser%20cooling%20and%20trapping/134/image-thumb__134__application/[email protected] 2x" />
1008</picture>
1009
1010					</div>
1011		<div class="absolute md:w-1/2 md:right-0 inset-0 bg-black/60 h-fit md:col-span-6 max-h-full">
1012			
1013
1014
1015
1016                                    
1017            
1018                                    
1019<div class="  flex flex-col gap-key-feature-sm sm:gap-key-feature-md px-8 sm:p-10 w-full lg:h-full relative py-7">
1020	
1021	<div class="flex flex-col pr-6 text-white ">
1022		<div class="text-key-feature-body-sm lg:text-key-feature-md font-bold text-balance">
1023							Atom laser cooling & trapping
1024					</div>
1025
1026		<div class="text-key-feature-body-sm lg:text-key-feature-body-md hidden sm:block [&_div]:line-clamp-4 line-clamp-4 font-light">
1027							<div>Over the last century, many experiments and theoretical studies on matter waves and the interaction between light and atoms have paved the way to modern atom optics and its application in research &amp; industry.</div>
1028					</div>
1029	</div>
1030
1031			<div class="flex justify-end items-end mt-auto absolute right-7 w-5 h-5 md:relative md:w-auto md:h-auto md:right-0">
1032						<a href="/applications/quantum-physics-science/atom-laser-cooling-and-trapping" class="inline-block hover:text-primary transition-colors" >
1033				<svg width="30" height="30" viewBox="0 0 30 30" fill="none" xmlns="http://www.w3.org/2000/svg" class="w-full h-full object-contain object-center">
1034
1035<circle cx="15" cy="15" r="14.5" stroke="currentColor"/>
1036<path d="M9 15L21 15" stroke="currentColor"/>
1037<path d="M15 21L21 15L15 9" stroke="currentColor"/>
1038</svg>
1039
1040			</a>
1041		</div>
1042	</div>
1043
1044                
1045                            
1046                    
1047
1048		</div>
1049	</div>
1050	
1051                
1052                            
1053                    
1054
1055	</div>
1056
1057
1058	
1059		
1060	<div class="col-span-12 md:col-span-6">
1061		
1062
1063
1064
1065                                    
1066            
1067                                    
1068
1069
1070		<div class="relative col-span-12 aspect-square md:aspect-[1.452/1] lg:
1070aspect-video md:grid md:grid-cols-12 md:gap-6">
1071		<div class="md:col-span-12">
1072							<picture >
1073	<source srcset="/applications/Quantum%20physics%20science/Ion%20laser%20cooling%20and%20trapping/135/image-thumb__135__application/application_atom-ion-trapping-w2560~-~media--2247bc1a--query.cba9678c.webp 1x, /applications/Quantum%20physics%20science/Ion%20laser%20cooling%20and%20trapping/135/image-thumb__135__application/application_atom-ion-trapping-w2560~-~media--2247bc1a--query@2x.cba9678c.webp 2x" media="(min-width: 1024px)" width="1295" height="728" type="image/webp" />
1074	<source srcset="/applications/Quantum%20physics%20science/Ion%20laser%20cooling%20and%20trapping/135/image-thumb__135__application/application_atom-ion-trapping-w2560~-~media--2247bc1a--query.84716ff7.png 1x, /applications/Quantum%20physics%20science/Ion%20laser%20cooling%20and%20trapping/135/image-thumb__135__application/application_atom-ion-trapping-w2560~-~media--2247bc1a--query@2x.84716ff7.png 2x" media="(min-width: 1024px)" width="1295" height="728" type="image/png" />
1075	<source srcset="/applications/Quantum%20physics%20science/Ion%20laser%20cooling%20and%20trapping/135/image-thumb__135__application/application_atom-ion-trapping-w2560~-~media--df42eb16--query.31890f50.webp 1x, /applications/Quantum%20physics%20science/Ion%20laser%20cooling%20and%20trapping/135/image-thumb__135__application/application_atom-ion-trapping-w2560~-~media--df42eb16--query@2x.31890f50.webp 2x" media="(min-width: 768px)" width="700" height="482" type="image/webp" />
1076	<source srcset="/applications/Quantum%20physics%20science/Ion%20laser%20cooling%20and%20trapping/135/image-thumb__135__application/application_atom-ion-trapping-w2560~-~media--df42eb16--query.f5c8e8cb.png 1x, /applications/Quantum%20physics%20science/Ion%20laser%20cooling%20and%20trapping/135/image-thumb__135__application/application_atom-ion-trapping-w2560~-~media--df42eb16--query@2x.f5c8e8cb.png 2x" media="(min-width: 768px)" width="700" height="482" type="image/png" />
1077	<source srcset="/applications/Quantum%20physics%20science/Ion%20laser%20cooling%20and%20trapping/135/image-thumb__135__application/application_atom-ion-trapping-w2560.6a148ee9.webp 1x, /applications/Quantum%20physics%20science/Ion%20laser%20cooling%20and%20trapping/135/image-thumb__135__application/[email protected] 2x" width="375" height="375" type="image/webp" />
1078	<source srcset="/applications/Quantum%20physics%20science/Ion%20laser%20cooling%20and%20trapping/135/image-thumb__135__application/application_atom-ion-trapping-w2560.e7c8e312.png 1x, /applications/Quantum%20physics%20science/Ion%20laser%20cooling%20and%20trapping/135/image-thumb__135__application/[email protected] 2x" width="375" height="375" type="image/png" />
1079	<img class="col-span-6 object-cover h-full w-full" src="/applications/Quantum%20physics%20science/Ion%20laser%20cooling%20and%20trapping/135/image-thumb__135__application/application_atom-ion-trapping-w2560.e7c8e312.png" width="375" height="375" alt="" loading="lazy" srcset="/applications/Quantum%20physics%20science/Ion%20laser%20cooling%20and%20trapping/135/image-thumb__135__application/application_atom-ion-trapping-w2560.e7c8e312.png 1x, /applications/Quantum%20physics%20science/Ion%20laser%20cooling%20and%20trapping/135/image-thumb__135__application/[email protected] 2x" />
1080</picture>
1081
1082					</div>
1083		<div class="absolute md:w-1/2 md:right-0 inset-0 bg-black/60 h-fit md:col-span-6 max-h-full">
1084			
1085
1086
1087
1088                                    
1089            
1090                                    
1091<div class="  flex flex-col gap-key-feature-sm sm:gap-key-feature-md px-8 sm:p-10 w-full lg:h-full relative py-7">
1092	
1093	<div class="flex flex-col pr-6 text-white ">
1094		<div class="text-key-feature-body-sm lg:text-key-feature-md font-bold text-balance">
1095							Ion laser cooling & trapping
1096					</div>
1097
1098		<div class="text-key-feature-body-sm lg:text-key-feature-body-md hidden sm:block [&_div]:line-clamp-4 line-clamp-4 font-light">
1099							<div>Explore how TOPTICA’s laser systems enable cooling and trapping of charged ions — the backbone of today’s quantum-precision experiments.</div>
1100					</div>
1101	</div>
1102
1103			<div class="flex justify-end items-end mt-auto absolute right-7 w-5 h-5 md:relative md:w-auto md:h-auto md:right-0">
1104						<a href="/applications/quantum-physics-science/ion-laser-cooling-and-trapping" class="inline-block hover:text-primary transition-colors" >
1105				<svg width="30" height="30" viewBox="0 0 30 30" fill="none" xmlns="http://www.w3.org/2000/svg" class="w-full h-full object-contain object-center">
1106
1107<circle cx="15" cy="15" r="14.5" stroke="currentColor"/>
1108<path d="M9 15L21 15" stroke="currentColor"/>
1109<path d="M15 21L21 15L15 9" stroke="currentColor"/>
1110</svg>
1111
1112			</a>
1113		</div>
1114	</div>
1115
1116                
1117                            
1118                    
1119
1120		</div>
1121	</div>
1122	
1123                
1124                            
1125                    
1126
1127	</div>
1128
1129
1130	
1131		
1132	<div class="col-span-12 md:col-span-6">
1133		
1134
1135
1136
1137                                    
1138            
1139                                    
1140
1141
1142		<div class="relative col-span-12 aspect-square md:aspect-[1.452/1] lg:
1142aspect-video md:grid md:grid-cols-12 md:gap-6">
1143		<div class="md:col-span-12">
1144							<picture >
1145	<source srcset="/applications/Sensing%20and%20spectroscopy/758/image-thumb__758__application/application_TOPTICA_%20sensing-spectroscopy_16x9_w2560~-~media--2247bc1a--query.65c38f02.webp 1x, /applications/Sensing%20and%20spectroscopy/758/image-thumb__758__application/application_TOPTICA_%20sensing-spectroscopy_16x9_w2560~-~media--2247bc1a--query@2x.65c38f02.webp 2x" media="(min-width: 1024px)" width="1295" height="728" type="image/webp" />
1146	<source srcset="/applications/Sensing%20and%20spectroscopy/758/image-thumb__758__application/application_TOPTICA_%20sensing-spectroscopy_16x9_w2560~-~media--2247bc1a--query.df760579.png 1x, /applications/Sensing%20and%20spectroscopy/758/image-thumb__758__application/application_TOPTICA_%20sensing-spectroscopy_16x9_w2560~-~media--2247bc1a--query@2x.df760579.png 2x" media="(min-width: 1024px)" width="1295" height="728" type="image/png" />
1147	<source srcset="/applications/Sensing%20and%20spectroscopy/758/image-thumb__758__application/application_TOPTICA_%20sensing-spectroscopy_16x9_w2560~-~media--df42eb16--query.f1fa9796.webp 1x, /applications/Sensing%20and%20spectroscopy/758/image-thumb__758__application/application_TOPTICA_%20sensing-spectroscopy_16x9_w2560~-~media--df42eb16--query@2x.f1fa9796.webp 2x" media="(min-width: 768px)" width="700" height="482" type="image/webp" />
1148	<source srcset="/applications/Sensing%20and%20spectroscopy/758/image-thumb__758__application/application_TOPTICA_%20sensing-spectroscopy_16x9_w2560~-~media--df42eb16--query.200ed046.png 1x, /applications/Sensing%20and%20spectroscopy/758/image-thumb__758__application/application_TOPTICA_%20sensing-spectroscopy_16x9_w2560~-~media--df42eb16--query@2x.200ed046.png 2x" media="(min-width: 768px)" width="700" height="482" type="image/png" />
1149	<source srcset="/applications/Sensing%20and%20spectroscopy/758/image-thumb__758__application/application_TOPTICA_%20sensing-spectroscopy_16x9_w2560.1aa91474.webp 1x, /applications/Sensing%20and%20spectroscopy/758/image-thumb__758__application/application_TOPTICA_%[email protected] 2x" width="375" height="375" type="image/webp" />
1150	<source srcset="/applications/Sensing%20and%20spectroscopy/758/image-thumb__758__application/application_TOPTICA_%20sensing-spectroscopy_16x9_w2560.7b355a97.png 1x, /applications/Sensing%20and%20spectroscopy/758/image-thumb__758__application/application_TOPTICA_%[email protected] 2x" width="375" height="375" type="image/png" />
1151	<img class="col-span-6 object-cover h-full w-full" src="/applications/Sensing%20and%20spectroscopy/758/image-thumb__758__application/application_TOPTICA_%20sensing-spectroscopy_16x9_w2560.7b355a97.png" width="375" height="375" alt="" loading="lazy" srcset="/applications/Sensing%20and%20spectroscopy/758/image-thumb__758__application/application_TOPTICA_%20sensing-spectroscopy_16x9_w2560.7b355a97.png 1x, /applications/Sensing%20and%20spectroscopy/758/image-thumb__758__application/application_TOPTICA_%[email protected] 2x" />
1152</picture>
1153
1154					</div>
1155		<div class="absolute md:w-1/2 md:right-0 inset-0 bg-black/60 h-fit md:col-span-6 max-h-full">
1156			
1157
1158
1159
1160                                    
1161            
1162                                    
1163<div class="  flex flex-col gap-key-feature-sm sm:gap-key-feature-md px-8 sm:p-10 w-full lg:h-full relative py-7">
1164	
1165	<div class="flex flex-col pr-6 text-white ">
1166		<div class="text-key-feature-body-sm lg:text-key-feature-md font-bold text-balance">
1167							Sensing & spectroscopy
1168					</div>
1169
1170		<div class="text-key-feature-body-sm lg:text-key-feature-body-md hidden sm:block [&_div]:line-clamp-4 line-clamp-4 font-light">
1171							<div>Light reveals what no other tool can: the structure, composition and even the dynamics of the world around us. In sensing and spectroscopy, lasers act as the most precise rulers and clocks imaginable. Their spectral purity, tunability, and ultrafast timing make them indispensable in applications ranging from fundamental materials research to industrial gas monitoring and next-generation communication research.</div>
1172					</div>
1173	</div>
1174
1175			<div class="flex justify-end items-end mt-auto absolute right-7 w-5 h-5 md:relative md:w-auto md:h-auto md:right-0">
1176						<a href="/applications/sensing-and-spectroscopy" class="inline-block hover:text-primary transition-colors" >
1177				<svg width="30" height="30" viewBox="0 0 30 30" fill="none" xmlns="http://www.w3.org/2000/svg" class="w-full h-full object-contain object-center">
1178
1179<circle cx="15" cy="15" r="14.5" stroke="currentColor"/>
1180<path d="M9 15L21 15" stroke="currentColor"/>
1181<path d="M15 21L21 15L15 9" stroke="currentColor"/>
1182</svg>
1183
1184			</a>
1185		</div>
1186	</div>
1187
1188                
1189                            
1190                    
1191
1192		</div>
1193	</div>
1194	
1195                
1196                            
1197                    
1198
1199	</div>
1200
1201
1202                
1203                            
1204                    
1205
1206	</div>
1207</section>
1208
1209                
1210                            
1211                    
1212
1213
1214
1215
1216                                    
1217            
1218                                    
1219
1220
1221
1222
1223<section class="bg-background   "  id="options"  data-spacing-top="large" data-spacing-bottom="large">
1224	<div class="grid grid-cols-4 sm:grid-cols-12 container max-w-xs sm:max-w-xl md:max-w-3xl xl:max-w-7xl mx-auto gap-4 sm:gap-5 md:gap-6 py-4">
1225		
1226
1227
1228
1229                                    
1230            
1231                                    
1232
1233
1234
1235	
1236	<h2 class="col-span-12 font-bold pb-[40px] lg:pb-[50px] -mb-4 sm:-mb-5 md:-mb-6 text-section-head-sm md:text-section-head-md lg:text-section-head-lg">
1237				
1238		        Options
1239        	</h2>
1240
1241                
1242                            
1243                    
1244
1245
1246		
1247
1248
1249
1250                                    
1251            
1252                                    
1253							
1254							
1255				<div class="col-span-12 md:col-span-6">
1256			
1257
1258
1259
1260                                    
1261            
1262                                    
1263<div class=" bg-black flex flex-col gap-key-feature-sm sm:gap-key-feature-md px-8 sm:p-10 w-full lg:h-full relative py-8">
1264			<div class="w-[85px] h-[85px] mb-4">
1265							<picture >
1266	<source srcset="/icons/2063/image-thumb__2063__key-feature-image/icon_TOPTICA_options-general.36bace88.webp 1x, /icons/2063/image-thumb__2063__key-feature-image/[email protected] 2x" width="85" height="85" type="image/webp" />
1267	<source srcset="/icons/2063/image-thumb__2063__key-feature-image/icon_TOPTICA_options-general.61d8972d.png 1x, /icons/2063/image-thumb__2063__key-feature-image/[email protected] 2x" width="85" height="85" type="image/png" />
1268	<img class="w-full h-full object-cover" src="/icons/2063/image-thumb__2063__key-feature-image/icon_TOPTICA_options-general.61d8972d.png" width="85" height="85" alt="" loading="lazy" srcset="/icons/2063/image-thumb__2063__key-feature-image/icon_TOPTICA_options-general.61d8972d.png 1x, /icons/2063/image-thumb__2063__key-feature-image/[email protected] 2x" />
1269</picture>
1270
1271					</div>
1272	
1273	<div class="flex flex-col pr-6 text-white ">
1274		<div class="text-key-feature-body-sm lg:text-key-feature-md font-bold text-balance">
1275							CLS FNC
1276					</div>
1277
1278		<div class="text-key-feature-body-sm lg:text-key-feature-body-md  [&_div]:line-clamp-6 line-clamp-6 font-light">
1279							The fiber noise cancellation (FNC)  module compensates phase noise that is acquired in optical fibers along the optical path.
1280					</div>
1281	</div>
1282
1283				</div>
1284
1285                
1286                            
1287                    
1288
1289		</div>
1290							
1291							
1292				<div class="col-span-12 md:col-span-6">
1293			
1294
1295
1296
1297                                    
1298            
1299                                    
1300<div class=" bg-black flex flex-col gap-key-feature-sm sm:gap-key-feature-md px-8 sm:p-10 w-full lg:h-full relative py-8">
1301			<div class="w-[85px] h-[85px] mb-4">
1302							<picture >
1303	<source srcset="/icons/2063/image-thumb__2063__key-feature-image/icon_TOPTICA_options-general.36bace88.webp 1x, /icons/2063/image-thumb__2063__key-feature-image/[email protected] 2x" width="85" height="85" type="image/webp" />
1304	<source srcset="/icons/2063/image-thumb__2063__key-feature-image/icon_TOPTICA_options-general.61d8972d.png 1x, /icons/2063/image-thumb__2063__key-feature-image/[email protected] 2x" width="85" height="85" type="image/png" />
1305	<img class="w-full h-full object-cover" src="/icons/2063/image-thumb__2063__key-feature-image/icon_TOPTICA_options-general.61d8972d.png" width="85" height="85" alt="" loading="lazy" srcset="/icons/2063/image-thumb__2063__key-feature-image/icon_TOPTICA_options-general.61d8972d.png 1x, /icons/2063/image-thumb__2063__key-feature-image/[email protected] 2x" />
1306</picture>
1307
1308					</div>
1309	
1310	<div class="flex flex-col pr-6 text-white ">
1311		<div class="text-key-feature-body-sm lg:text-key-feature-md font-bold text-balance">
1312							CLS Bridge
1313					</div>
1314
1315		<div class="text-key-feature-body-sm lg:text-key-feature-body-md  [&_div]:line-clamp-6 line-clamp-6 font-light">
1316							The CLS Bridge module allows to shift the output frequency of the CLS to a customized target frequency. Besides, it allows for linear frequency ramps and can therefore be used to compensate for linear cavity drifts.
1317					</div>
1318	</div>
1319
1320				</div>
1321
1322                
1323                            
1324                    
1325
1326		</div>
1327							
1328							
1329				<div class="col-span-12 md:col-span-6">
1330			
1331
1332
1333
1334                                    
1335            
1336                                    
1337<div class=" bg-black flex flex-col gap-key-feature-sm sm:gap-key-feature-md px-8 sm:p-10 w-full lg:h-full relative py-8">
1338			<div class="w-[85px] h-[85px] mb-4">
1339							<picture >
1340	<source srcset="/icons/2063/image-thumb__2063__key-feature-image/icon_TOPTICA_options-general.36bace88.webp 1x, /icons/2063/image-thumb__2063__key-feature-image/[email protected] 2x" width="85" height="85" type="image/webp" />
1341	<source srcset="/icons/2063/image-thumb__2063__key-feature-image/icon_TOPTICA_options-general.61d8972d.png 1x, /icons/2063/image-thumb__2063__key-feature-image/[email protected] 2x" width="85" height="85" type="image/png" />
1342	<img class="w-full h-full object-cover" src="/icons/2063/image-thumb__2063__key-feature-image/icon_TOPTICA_options-general.61d8972d.png" width="85" height="85" alt="" loading="lazy" srcset="/icons/2063/image-thumb__2063__key-feature-image/icon_TOPTICA_options-general.61d8972d.png 1x, /icons/2063/image-thumb__2063__key-feature-image/[email protected] 2x" />
1343</picture>
1344
1345					</div>
1346	
1347	<div class="flex flex-col pr-6 text-white ">
1348		<div class="text-key-feature-body-sm lg:text-key-feature-md font-bold text-balance">
1349							CLS Seismic+
1350					</div>
1351
1352		<div class="text-key-feature-body-sm lg:text-key-feature-body-md  [&_div]:line-clamp-6 line-clamp-6 font-light">
1353							The CLS Seismic+ option is recommended for critical environments. It integrates a real-time seismic sensor to further enhance the isolation performance of the CLS-HFC pro and MCLS-HFC pro, extending down to frequencies as low as 0.2 Hz.
1354					</div>
1355	</div>
1356
1357				</div>
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1364							
1365							
1366				<div class="col-span-12 md:col-span-6">
1367			
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1374<div class=" bg-black flex flex-col gap-key-feature-sm sm:gap-key-feature-md px-8 sm:p-10 w-full lg:h-full relative py-8">
1375			<div class="w-[85px] h-[85px] mb-4">
1376							<picture >
1377	<source srcset="/icons/2063/image-thumb__2063__key-feature-image/icon_TOPTICA_options-general.36bace88.webp 1x, /icons/2063/image-thumb__2063__key-feature-image/[email protected] 2x" width="85" height="85" type="image/webp" />
1378	<source srcset="/icons/2063/image-thumb__2063__key-feature-image/icon_TOPTICA_options-general.61d8972d.png 1x, /icons/2063/image-thumb__2063__key-feature-image/[email protected] 2x" width="85" height="85" type="image/png" />
1379	<img class="w-full h-full object-cover" src="/icons/2063/image-thumb__2063__key-feature-image/icon_TOPTICA_options-general.61d8972d.png" width="85" height="85" alt="" loading="lazy" srcset="/icons/2063/image-thumb__2063__key-feature-image/icon_TOPTICA_options-general.61d8972d.png 1x, /icons/2063/image-thumb__2063__key-feature-image/[email protected] 2x" />
1380</picture>
1381
1382					</div>
1383	
1384	<div class="flex flex-col pr-6 text-white ">
1385		<div class="text-key-feature-body-sm lg:text-key-feature-md font-bold text-balance">
1386							CLS IR Camera
1387					</div>
1388
1389		<div class="text-key-feature-body-sm lg:text-key-feature-body-md  [&_div]:line-clamp-6 line-clamp-6 font-light">
1390							The CLS IR Camera  facilitates monitoring the optical cavity transmission via a camera to easily identify the geometry of the electro-magnetic mode oscillating in the cavity. This option only needs to be purchased for CLS wavelengths > 1000nm. For wavelengths < 1000nm, the camera is part of the CLS High-Finesse Cavity Package by default.
1391					</div>
1392	</div>
1393
1394				</div>
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1400		</div>
1401							
1402							
1403				<div class="col-span-12 md:col-span-6">
1404			
1405
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1407
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1411<div class=" bg-black flex flex-col gap-key-feature-sm sm:gap-key-feature-md px-8 sm:p-10 w-full lg:h-full relative py-8">
1412			<div class="w-[85px] h-[85px] mb-4">
1413							<picture >
1414	<source srcset="/icons/2063/image-thumb__2063__key-feature-image/icon_TOPTICA_options-general.36bace88.webp 1x, /icons/2063/image-thumb__2063__key-feature-image/[email protected] 2x" width="85" height="85" type="image/webp" />
1415	<source srcset="/icons/2063/image-thumb__2063__key-feature-image/icon_TOPTICA_options-general.61d8972d.png 1x, /icons/2063/image-thumb__2063__key-feature-image/[email protected] 2x" width="85" height="85" type="image/png" />
1416	<img class="w-full h-full object-cover" src="/icons/2063/image-thumb__2063__key-feature-image/icon_TOPTICA_options-general.61d8972d.png" width="85" height="85" alt="" loading="lazy" srcset="/icons/2063/image-thumb__2063__key-feature-image/icon_TOPTICA_options-general.61d8972d.png 1x, /icons/2063/image-thumb__2063__key-feature-image/[email protected] 2x" />
1417</picture>
1418
1419					</div>
1420	
1421	<div class="flex flex-col pr-6 text-white ">
1422		<div class="text-key-feature-body-sm lg:text-key-feature-md font-bold text-balance">
1423							19" rack integration
1424					</div>
1425
1426		<div class="text-key-feature-body-sm lg:text-key-feature-body-md  [&_div]:line-clamp-6 line-clamp-6 font-light">
1427							Modular integration into 19" industry rack to save space and ensure mobility. 
1428					</div>
1429	</div>
1430
1431			<div class="flex justify-end items-end mt-auto ">
1432						<a href="/products/rack-integrated-lasers/t-rack" class="inline-block hover:text-primary transition-colors" target="_self" >
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1434
1435<circle cx="15" cy="15" r="14.5" stroke="currentColor"/>
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1440			</a>
1441		</div>
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1454	</div>
1455</section>
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1471<section class="bg-black   "  id="specifications"  data-spacing-top="large" data-spacing-bottom="large">
1472	<div class="grid grid-cols-4 sm:grid-cols-12 container max-w-xs sm:max-w-xl md:max-w-3xl xl:max-w-7xl mx-auto gap-4 sm:gap-5 md:gap-6 py-4">
1473		
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1476
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1483	
1484	<h2 class="col-span-12 font-bold pb-[40px] lg:pb-[50px] -mb-4 sm:-mb-5 md:-mb-6 text-section-head-sm md:text-section-head-md lg:text-section-head-lg">
1485				
1486		        Specifications
1487        	</h2>
1488
1489                
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1494		
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1496
1497
1498                                    
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1500                                    
1501<div class="col-span-12">
1502	<div id="spec-table">
1503		<spec-table :items='[]' :specs='[{"label":"Center wavelength","value":"206 to 1770 nm <sup>(1)<\/sup>","sortOrder":1,"groupName":"Emission wavelength"},{"label":"Output power","value":"> 1 mW to > 100 W <sup>(2)<\/sup>","sortOrder":2,"groupName":"Optical power output"},{"label":"Linewidth","value":"< 1 Hz <sup>(3)<\/sup>","sortOrder":3,"groupName":"Linewidth"},{"label":"Frequency stability","value":"< 2 \u00b7 10-15 <sup>(4)<\/sup>","sortOrder":4,"groupName":"Frequency stability"},{"label":"Linear drift rate","value":"< 150 mHz <sup>(5)<\/sup>","sortOrder":5,"groupName":"Frequency drift rate"},{"label":"Phase noise","value":"-42 dBc (10 Hz), - 90 dBc (10 kHz, 1 MHz) <sup>(6)<\/sup>","sortOrder":6,"groupName":"Phase noise"},{"label":"Control-loop bandwidth","value":"up to 4.5 MHz <sup>(7)<\/sup>","sortOrder":7,"groupName":"Control-loop bandwidth"},{"label":"Free spectral range of high-finesse cavity","value":"1.5 GHz","sortOrder":8,"groupName":"Free spectral range of high-finesse cavity"},{"label":"Finesse of high-finesse cavity","value":"> 200,000 (typ.)","sortOrder":9,"groupName":"Finesse"},{"label":"Dimensions","value":"310 \u00d7 444 \u00d7 611 mm3 (H \u00d7 W \u00d7 D) <sup>(8)<\/sup>","sortOrder":10,"groupName":"Dimensions"},{"label":"Weight","value":"92 kg <sup>(8)<\/sup>","sortOrder":11,"groupName":"Weight"},{"label":"Power consumption","value":"215 W","sortOrder":12,"groupName":"Input power"}]' :variant-specs='[]' :asterisk='"<sup>(1)<\/sup>  incl. frequency-conversion systems upon demand\n<sup>(2)<\/sup>  high powers incl. fiber amplifier oder tapered amplifier stages\n<sup>(3)<\/sup>  typ. value, 1s integration\n<sup>(4)<\/sup> typ. value (1 s - 100 s) linear drift removed, incl. Add-Ons\n<sup>(5)<\/sup>  typ. value, 12 months after installation\n<sup>(6)<\/sup> typ. example DL pro 729 F incl. Add-Ons\n<sup>(7)<\/sup> with DL pro F, otherwise typ. up to 2.5 MHz\n<sup>(8)<\/sup>  High-finesse cavity setup only - not including control electronics, CLS source laser and some CLS Add-Ons"'/>
1504	</div>
1505</div>
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1517			<div class="col-span-12">
1518			<div id="additional-information">
1519				<additional-information :items='[{"thumbnail":"<picture >\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1634\/image-thumb__1634__additional-information\/product_TOPTICA_CLS_add-info_schematic.0f25c61b.webp 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1634\/image-thumb__1634__additional-information\/[email protected] 2x\" width=\"285\" height=\"200\" type=\"image\/webp\" \/>\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1634\/image-thumb__1634__additional-information\/product_TOPTICA_CLS_add-info_schematic.e1f5d7cd.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1634\/image-thumb__1634__additional-information\/[email protected] 2x\" width=\"285\" height=\"200\" type=\"image\/jpeg\" \/>\n\t<img src=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1634\/image-thumb__1634__additional-information\/product_TOPTICA_CLS_add-info_schematic.e1f5d7cd.jpg\" width=\"285\" height=\"200\" alt=\"Block diagram of the CLS configuration with the standard CLS Add-Ons Package. For simplicity the control electronics is not shown in the diagram. \" title=\"Block diagram of the CLS configuration with the standard CLS Add-Ons Package. For simplicity the control electronics is not shown in the diagram. \" loading=\"lazy\" srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1634\/image-thumb__1634__additional-information\/product_TOPTICA_CLS_add-info_schematic.e1f5d7cd.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1634\/image-thumb__1634__additional-information\/[email protected] 2x\" \/>\n<\/picture>\n","modal":"<picture >\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1634\/image-thumb__1634__additional-information-modal\/product_TOPTICA_CLS_add-info_schematic.aa2b7388.webp 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1634\/image-thumb__1634__additional-information-modal\/[email protected] 2x\" width=\"1024\" height=\"718\" type=\"image\/webp\" \/>\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1634\/image-thumb__1634__additional-information-modal\/product_TOPTICA_CLS_add-info_schematic.9cb14c74.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1634\/image-thumb__1634__additional-information-modal\/[email protected] 2x\" width=\"1024\" height=\"718\" type=\"image\/jpeg\" \/>\n\t<img class=\"w-full h-full object-contain object-center\" src=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1634\/image-thumb__1634__additional-information-modal\/product_TOPTICA_CLS_add-info_schematic.9cb14c74.jpg\" width=\"1024\" height=\"718\" alt=\"Block diagram of the CLS configuration with the standard CLS Add-Ons Package. For simplicity the control electronics is not shown in the diagram. \" title=\"Block diagram of the CLS configuration with the standard CLS Add-Ons Package. For simplicity the control electronics is not shown in the diagram. \" loading=\"lazy\" srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1634\/image-thumb__1634__additional-information-modal\/product_TOPTICA_CLS_add-info_schematic.9cb14c74.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1634\/image-thumb__1634__additional-information-modal\/[email protected] 2x\" \/>\n<\/picture>\n","title":"Block diagram of the CLS configuration with the standard CLS Add-Ons Package. For simplicity the control electronics is not shown in the diagram. "},{"thumbnail":"<picture >\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1629\/image-thumb__1629__additional-information\/product_TOPTICA_CLS_add-info_freq-noise-normal.4bbab8a1.webp 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1629\/image-thumb__1629__additional-information\/[email protected] 2x\" width=\"259\" height=\"200\" type=\"image\/webp\" \/>\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1629\/image-thumb__1629__additional-information\/product_TOPTICA_CLS_add-info_freq-noise-normal.4a4ec41e.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1629\/image-thumb__1629__additional-information\/[email protected] 2x\" width=\"259\" height=\"200\" type=\"image\/jpeg\" \/>\n\t<img src=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1629\/image-thumb__1629__additional-information\/product_TOPTICA_CLS_add-info_freq-noise-normal.4a4ec41e.jpg\" width=\"259\" height=\"200\" alt=\"Frequency noise power spectral density normalised to laser frequency. Delayed self-heterodyne beat measurement showing the increase in the locking bandwidth when locking feedback is provided to the ECDL intra-cavity EOM (F option) compared to the diode current. \" title=\"Frequency noise power spectral density normalised to laser frequency. Delayed self-heterodyne beat measurement showing the increase in the locking bandwidth when locking feedback is provided to the ECDL intra-cavity EOM (F option) compared to the diode current. \" loading=\"lazy\" srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1629\/image-thumb__1629__additional-information\/product_TOPTICA_CLS_add-info_freq-noise-normal.4a4ec41e.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1629\/image-thumb__1629__additional-information\/[email protected] 2x\" \/>\n<\/picture>\n","modal":"<picture >\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1629\/image-thumb__1629__additional-information-modal\/product_TOPTICA_CLS_add-info_freq-noise-normal.e9ba55cb.webp 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1629\/image-thumb__1629__additional-information-modal\/[email protected] 2x\" width=\"1024\" height=\"790\" t
1519ype=\"image\/webp\" \/>\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1629\/image-thumb__1629__additional-information-modal\/product_TOPTICA_CLS_add-info_freq-noise-normal.1467f5f2.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1629\/image-thumb__1629__additional-information-modal\/[email protected] 2x\" width=\"1024\" height=\"790\" type=\"image\/jpeg\" \/>\n\t<img class=\"w-full h-full object-contain object-center\" src=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1629\/image-thumb__1629__additional-information-modal\/product_TOPTICA_CLS_add-info_freq-noise-normal.1467f5f2.jpg\" width=\"1024\" height=\"790\" alt=\"Frequency noise power spectral density normalised to laser frequency. Delayed self-heterodyne beat measurement showing the increase in the locking bandwidth when locking feedback is provided to the ECDL intra-cavity EOM (F option) compared to the diode current. \" title=\"Frequency noise power spectral density normalised to laser frequency. Delayed self-heterodyne beat measurement showing the increase in the locking bandwidth when locking feedback is provided to the ECDL intra-cavity EOM (F option) compared to the diode current. \" loading=\"lazy\" srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1629\/image-thumb__1629__additional-information-modal\/product_TOPTICA_CLS_add-info_freq-noise-normal.1467f5f2.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1629\/image-thumb__1629__additional-information-modal\/product_TOPTICA_CLS_add-info_freq-noise-normal@2x.
15191467f5f2.jpg 2x\" \/>\n<\/picture>\n","title":"Frequency noise power spectral density normalised to laser frequency. Delayed self-heterodyne beat measurement showing the increase in the locking bandwidth when locking feedback is provided to the ECDL intra-cavity EOM (F option) compared to the diode current. "},{"thumbnail":"<picture >\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1630\/image-thumb__1630__additional-information\/product_TOPTICA_CLS_add-info_freq-stab-no-FNC.9fc96018.webp 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1630\/image-thumb__1630__additional-information\/[email protected] 2x\" width=\"295\" height=\"200\" type=\"image\/webp\" \/>\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1630\/image-thumb__1630__additional-information\/product_TOPTICA_CLS_add-info_freq-stab-no-FNC.27192b4c.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1630\/image-thumb__1630__additional-information\/[email protected] 2x\" width=\"295\" height=\"200\" type=\"image\/jpeg\" \/>\n\t<img src=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1630\/image-thumb__1630__additional-information\/product_TOPTICA_CLS_add-info_freq-stab-no-FNC.27192b4c.jpg\" width=\"295\" height=\"200\" alt=\"Frequency stability of the CLS with and without fiber noise cancellation (CLS FNC), extracted by measuring a beat of the system with a reference system via a frequency counter. \" title=\"Frequency stability of the CLS with and without fiber noise cancellation (CLS FNC), extracted by measuring a beat of the system with a reference system via a frequency counter. \" loading=\"lazy\" srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1630\/image-thumb__1630__additional-information\/product_TOPTICA_CLS_add-info_freq-stab-no-FNC.27192b4c.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1630\/image-thumb__1630__additional-information\/[email protected] 2x\" \/>\n<\/picture>\n","modal":"<picture >\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1630\/image-thumb__1630__additional-information-modal\/product_TOPTICA_CLS_add-info_freq-stab-no-FNC.6b09ae94.webp 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1630\/image-thumb__1630__additional-information-modal\/[email protected] 2x\" width=\"1024\" height=\"692\" type=\"image\/webp\" \/>\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1630\/image-thumb__1630__additional-information-modal\/product_TOPTICA_CLS_add-info_freq-stab-no-FNC.68cde6bf.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1630\/image-thumb__1630__additional-information-modal\/[email protected] 2x\" width=\"1024\" height=\"692\" type=\"image\/jpeg\" \/>\n\t<img class=\"w-full h-full object-contain object-center\" src=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1630\/image-thumb__1630__additional-information-modal\/product_TOPTICA_CLS_add-info_freq-stab-no-FNC.68cde6bf.jpg\" width=\"1024\" height=\"692\" alt=\"Frequency stability of the CLS with and without fiber noise cancellation (CLS FNC), extracted by measuring a beat of the system with a reference system via a frequency counter. \" title=\"Frequency stability of the CLS with and without fiber noise cancellation (CLS FNC), extracted by measuring a beat of the system with a reference system via a frequency counter. \" loading=\"lazy\" srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1630\/image-thumb__1630__additional-information-modal\/product_TOPTICA_CLS_add-info_freq-stab-no-FNC.68cde6bf.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1630\/image-thumb__1630__additional-information-modal\/[email protected] 2x\" \/>\n<\/picture>\n","title":"Frequency stability of the CLS with and without fiber noise cancellation (CLS FNC), extracted by measuring a beat of the system with a reference system via a frequency counter. "},{"thumbnail":"<picture >\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1631\/image-thumb__1631__additional-information\/product_TOPTICA_CLS_add-info_freq-stab.75153d9c.webp 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1631\/image-thumb__1631__additional-information\/[email protected] 2x\" width=\"259\" height=\"200\" type=\"image\/webp\" \/>\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1631\/image-thumb__1631__additional-information\/product_TOPTICA_CLS_add-info_freq-stab.ad2816fe.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1631\/image-thumb__1631__additional-information\/[email protected] 2x\" width=\"259\" height=\"200\" type=\"image\/jpeg\" \/>\n\t<img src=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1631\/image-thumb__1631__additional-information\/product_TOPTICA_CLS_add-info_freq-stab.ad2816fe.jpg\" width=\"259\" height=\"200\" alt=\"Frequency stability of the CLS with and without the optical power in front of the cavity stabilised, extracted by measuring a beat of the system with a reference system via a frequency counter. \" title=\"Frequency stability of the CLS with and without the optical power in front of the cavity stabilised, extracted by measuring a beat of the system with a reference system via a frequency counter. \" loading=\"lazy\" srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1631\/image-thumb__1631__additional-information\/product_TOPTICA_CLS_add-info_freq-stab.ad2816fe.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1631\/image-thumb__1631__additional-information\/[email protected] 2x\" \/>\n<\/picture>\n","modal":"<picture >\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1631\/image-thumb__1631__additional-information-modal\/product_TOPTICA_CLS_add-info_freq-stab.8dc0e54e.webp 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1631\/image-thumb__1631__additional-information-modal\/[email protected] 2x\" width=\"1024\" height=\"790\" t
1519ype=\"image\/webp\" \/>\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1631\/image-thumb__1631__additional-information-modal\/product_TOPTICA_CLS_add-info_freq-stab.630693a3.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1631\/image-thumb__1631__additional-information-modal\/[email protected] 2x\" width=\"1024\" height=\"790\" type=\"image\/jpeg\" \/>\n\t<img class=\"w-full h-full object-contain object-center\" src=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1631\/image-thumb__1631__additional-information-modal\/product_TOPTICA_CLS_add-info_freq-stab.630693a3.jpg\" width=\"1024\" height=\"790\" alt=\"Frequency stability of the CLS with and without the optical power in front of the cavity stabilised, extracted by measuring a beat of the system with a reference system via a frequency counter. \" title=\"Frequency stability of the CLS with and without the optical power in front of the cavity stabilised, extracted by measuring a beat of the system with a reference system via a frequency counter. \" loading=\"lazy\" srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1631\/image-thumb__1631__additional-information-modal\/product_TOPTICA_CLS_add-info_freq-stab.630693a3.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1631\/image-thumb__1631__additional-information-modal\/[email protected] 2x\" \/>\n<\/picture>\n","title":"Frequency stability of the CLS with and without the optical power in front of the cavity stabilised, extracted by measuring a beat of the system with a reference system via a frequency counter. "},{"thumbnail":"<picture >\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1632\/image-thumb__1632__additional-information\/product_TOPTICA_CLS_add-info_seismic.87b7321a.webp 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1632\/image-thumb__1632__additional-information\/[email protected] 2x\" width=\"258\" height=\"200\" type=\"image\/webp\" \/>\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1632\/image-thumb__1632__additional-information\/product_TOPTICA_CLS_add-info_seismic.000e5124.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1632\/image-thumb__1632__additional-information\/[email protected] 2x\" width=\"258\" height=\"200\" type=\"image\/jpeg\" \/>\n\t<img src=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1632\/image-thumb__1632__additional-information\/product_TOPTICA_CLS_add-info_seismic.000e5124.jpg\" width=\"258\" height=\"200\" alt=\"Performance of the default CLS active seismic isolation and of the CLS Seismic+ option in terms of acceleration power spectral density. \" title=\"Performance of the default CLS active seismic isolation and of the CLS Seismic+ option in terms of acceleration power spectral density. \" loading=\"lazy\" srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1632\/image-thumb__1632__additional-information\/product_TOPTICA_CLS_add-info_seismic.000e5124.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1632\/image-thumb__1632__additional-information\/[email protected] 2x\" \/>\n<\/picture>\n","modal":"<picture >\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1632\/image-thumb__1632__additional-information-modal\/product_TOPTICA_CLS_add-info_seismic.8fe5ae29.webp 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1632\/image-thumb__1632__additional-information-modal\/[email protected] 2x\" width=\"1024\" height=\"791\" type=\"image\/webp\" \/>\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1632\/image-thumb__1632__additional-information-modal\/product_TOPTICA_CLS_add-info_seismic.2cdc623b.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1632\/image-thumb__1632__additional-information-modal\/[email protected] 2x\" width=\"1024\" height=\"791\" type=\"image\/jpeg\" \/>\n\t<img class=\"w-full h-full object-contain object-center\" src=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1632\/image-thumb__1632__additional-information-modal\/product_TOPTICA_CLS_add-info_seismic.2cdc623b.jpg\" width=\"1024\" height=\"791\" alt=\"Performance of the default CLS active seismic isolation and of the CLS Seismic+ option in terms of acceleration power spectral density. \" title=\"Performance of the default CLS active seismic isolation and of the CLS Seismic+ option in terms of acceleration power spectral density. \" loading=\"lazy\" srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1632\/image-thumb__1632__additional-information-modal\/product_TOPTICA_CLS_add-info_seismic.2cdc623b.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1632\/image-thumb__1632__additional-information-modal\/[email protected] 2x\" \/>\n<\/picture>\n","title":"Performance of the default CLS active seismic isolation and of the CLS Seismic+ option in terms of acceleration power spectral density. "},{"thumbnail":"<picture >\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1633\/image-thumb__1633__additional-information\/product_TOPTICA_CLS_add-info_freq-noise-frac.da19f4ec.webp 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1633\/image-thumb__1633__additional-information\/[email protected] 2x\" width=\"259\" height=\"200\" type=\"image\/webp\" \/>\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1633\/image-thumb__1633__additional-information\/product_TOPTICA_CLS_add-info_freq-noise-frac.722b28a5.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1633\/image-thumb__1633__additional-information\/[email protected] 2x\" width=\"259\" height=\"200\" type=\"image\/jpeg\" \/>\n\t<img src=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1633\/image-thumb__1633__additional-information\/product_TOPTICA_CLS_add-info_freq-noise-frac.722b28a5.jpg\" width=\"259\" height=\"200\" alt=\"Fractional frequency noise power spectral density of the CLS with and without seismic and acoustic isolation, extracted by measuring a beat of the system with a reference system via a frequency counter. \" title=\"Fractional frequency noise power spectral density of the CLS with and without seismic and acoustic isolation, extracted by measuring a beat of the system with a reference system via a frequency counter. \" loading=\"lazy\" srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1633\/image-thumb__1633__additional-information\/product_TOPTICA_CLS_add-info_freq-noise-frac.722b28a5.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1633\/image-thumb__1633__additional-information\/[email protected] 2x\" \/>\n<\/picture>\n","modal":"<picture >\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1633\/image-thumb__1633__additional-information-modal\/product_TOPTICA_CLS_add-info_freq-noise-frac.755fa8df.webp 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1633\/image-thumb__1633__additional-information-modal\/[email protected] 2x\" width=\"1024\" height=\"790\" t
1519ype=\"image\/webp\" \/>\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1633\/image-thumb__1633__additional-information-modal\/product_TOPTICA_CLS_add-info_freq-noise-frac.c0eb87ed.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1633\/image-thumb__1633__additional-information-modal\/[email protected] 2x\" width=\"1024\" height=\"790\" type=\"image\/jpeg\" \/>\n\t<img class=\"w-full h-full object-contain object-center\" src=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1633\/image-thumb__1633__additional-information-modal\/product_TOPTICA_CLS_add-info_freq-noise-frac.c0eb87ed.jpg\" width=\"1024\" height=\"790\" alt=\"Fractional frequency noise power spectral density of the CLS with and without seismic and acoustic isolation, extracted by measuring a beat of the system with a reference system via a frequency counter. \" title=\"Fractional frequency noise power spectral density of the CLS with and without seismic and acoustic isolation, extracted by measuring a beat of the system with a reference system via a frequency counter. \" loading=\"lazy\" srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1633\/image-thumb__1633__additional-information-modal\/product_TOPTICA_CLS_add-info_freq-noise-frac.c0eb87ed.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1633\/image-thumb__1633__additional-information-modal\/[email protected] 2x\" \/>\n<\/picture>\n","title":"Fractional frequency noise power spectral density of the CLS with and without seismic and acoustic isolation, extracted by measuring a beat of the system with a reference system via a frequency counter. "},{"thumbnail":"<picture >\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1627\/image-thumb__1627__additional-information\/product_TOPTICA_CLS_add-info_freq-noise-neat.0dca358a.webp 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1627\/image-thumb__1627__additional-information\/[email protected] 2x\" width=\"259\" height=\"200\" type=\"image\/webp\" \/>\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1627\/image-thumb__1627__additional-information\/product_TOPTICA_CLS_add-info_freq-noise-neat.1029e5e0.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1627\/image-thumb__1627__additional-information\/[email protected] 2x\" width=\"259\" height=\"200\" type=\"image\/jpeg\" \/>\n\t<img src=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1627\/image-thumb__1627__additional-information\/product_TOPTICA_CLS_add-info_freq-noise-neat.1029e5e0.jpg\" width=\"259\" height=\"200\" alt=\"Frequency noise power spectral density normalised to the laser frequency extracted via cross-correlation analysis of beat-notes with two reference lasers. \" title=\"Frequency noise power spectral density normalised to the laser frequency extracted via cross-correlation analysis of beat-notes with two reference lasers. \" loading=\"lazy\" srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1627\/image-thumb__1627__additional-information\/product_TOPTICA_CLS_add-info_freq-noise-neat.1029e5e0.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1627\/image-thumb__1627__additional-information\/[email protected] 2x\" \/>\n<\/picture>\n","modal":"<picture >\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1627\/image-thumb__1627__additional-information-modal\/product_TOPTICA_CLS_add-info_freq-noise-neat.aaffe635.webp 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1627\/image-thumb__1627__additional-information-modal\/[email protected] 2x\" width=\"1024\" height=\"790\" type=\"image\/webp\" \/>\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1627\/image-thumb__1627__additional-information-modal\/product_TOPTICA_CLS_add-info_freq-noise-neat.91189a8a.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1627\/image-thumb__1627__additional-information-modal\/[email protected] 2x\" width=\"1024\" height=\"790\" t
1519ype=\"image\/jpeg\" \/>\n\t<img class=\"w-full h-full object-contain object-center\" src=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1627\/image-thumb__1627__additional-information-modal\/product_TOPTICA_CLS_add-info_freq-noise-neat.91189a8a.jpg\" width=\"1024\" height=\"790\" alt=\"Frequency noise power spectral density normalised to the laser frequency extracted via cross-correlation analysis of beat-notes with two reference lasers. \" title=\"Frequency noise power spectral density normalised to the laser frequency extracted via cross-correlation analysis of beat-notes with two reference lasers. \" loading=\"lazy\" srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1627\/image-thumb__1627__additional-information-modal\/product_TOPTICA_CLS_add-info_freq-noise-neat.91189a8a.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1627\/image-thumb__1627__additional-information-modal\/[email protected] 2x\" \/>\n<\/picture>\n","title":"Frequency noise power spectral density normalised to the laser frequency extracted via cross-correlation analysis of beat-notes with two reference lasers. "},{"thumbnail":"<picture >\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1626\/image-thumb__1626__additional-information\/product_TOPTICA_CLS_add-info_freq-allan-dev.429eca7a.webp 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1626\/image-thumb__1626__additional-information\/[email protected] 2x\" width=\"259\" height=\"200\" type=\"image\/webp\" \/>\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1626\/image-thumb__1626__additional-information\/product_TOPTICA_CLS_add-info_freq-allan-dev.caaa0c97.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1626\/image-thumb__1626__additional-information\/[email protected] 2x\" width=\"259\" height=\"200\" type=\"image\/jpeg\" \/>\n\t<img src=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1626\/image-thumb__1626__additional-information\/product_TOPTICA_CLS_add-info_freq-allan-dev.caaa0c97.jpg\" width=\"259\" height=\"200\" alt=\"Frequency stability in terms of modified Allan deviation after linear drift removal extracted via cross-correlation analysis of beat-notes with two reference lasers. \" title=\"Frequency stability in terms of modified Allan deviation after linear drift removal extracted via cross-correlation analysis of beat-notes with two reference lasers. \" loading=\"lazy\" srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1626\/image-thumb__1626__additional-information\/product_TOPTICA_CLS_add-info_freq-allan-dev.caaa0c97.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1626\/image-thumb__1626__additional-information\/[email protected] 2x\" \/>\n<\/picture>\n","modal":"<picture >\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1626\/image-thumb__1626__additional-information-modal\/product_TOPTICA_CLS_add-info_freq-allan-dev.1588a443.webp 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1626\/image-thumb__1626__additional-information-modal\/[email protected] 2x\" width=\"1024\" height=\"790\" type=\"image\/webp\" \/>\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1626\/image-thumb__1626__additional-information-modal\/product_TOPTICA_CLS_add-info_freq-allan-dev.16c842f1.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1626\/image-thumb__1626__additional-information-modal\/[email protected] 2x\" width=\"1024\" height=\"790\" type=\"image\/jpeg\" \/>\n\t<img class=\"w-full h-full object-contain object-center\" src=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1626\/image-thumb__1626__additional-information-modal\/product_TOPTICA_CLS_add-info_freq-allan-dev.16c842f1.jpg\" width=\"1024\" height=\"790\" alt=\"Frequency stability in terms of modified Allan deviation after linear drift removal extracted via cross-correlation analysis of beat-notes with two reference lasers. \" title=\"Frequency stability in terms of modified Allan deviation after linear drift removal extracted via cross-correlation analysis of beat-notes with two reference lasers. \" loading=\"lazy\" srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1626\/image-thumb__1626__additional-information-modal\/product_TOPTICA_CLS_add-info_freq-allan-dev.16c842f1.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1626\/image-thumb__1626__additional-information-modal\/[email protected] 2x\" \/>\n<\/picture>\n","title":"Frequency stability in terms of modified Allan deviation after linear drift removal extracted via cross-correlation analysis of beat-notes with two reference lasers. "},{"thumbnail":"<picture >\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1628\/image-thumb__1628__additional-information\/product_TOPTICA_CLS_add-info_phase-noise.7ce9bb1f.webp 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1628\/image-thumb__1628__additional-information\/[email protected] 2x\" width=\"258\" height=\"200\" type=\"image\/webp\" \/>\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1628\/image-thumb__1628__additional-information\/product_TOPTICA_CLS_add-info_phase-noise.13c7144e.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1628\/image-thumb__1628__additional-information\/[email protected] 2x\" width=\"258\" height=\"200\" type=\"image\/jpeg\" \/>\n\t<img src=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1628\/image-thumb__1628__additional-information\/product_TOPTICA_CLS_add-info_phase-noise.13c7144e.jpg\" width=\"258\" height=\"200\" alt=\"Phase noise power spectral density (PSD) of a CLS at 729 nm obtained by cross-correlation analyses of beat-notes with two reference lasers. \" title=\"Phase noise power spectral density (PSD) of a CLS at 729 nm obtained by cross-correlation analyses of beat-notes with two reference lasers. \" loading=\"lazy\" srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1628\/image-thumb__1628__additional-information\/product_TOPTICA_CLS_add-info_phase-noise.13c7144e.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1628\/image-thumb__1628__additional-information\/[email protected] 2x\" \/>\n<\/picture>\n","modal":"<picture >\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1628\/image-thumb__1628__additional-information-modal\/product_TOPTICA_CLS_add-info_phase-noise.b438923d.webp 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1628\/image-thumb__1628__additional-information-modal\/[email protected] 2x\" width=\"1024\" height=\"791\" t
1519ype=\"image\/webp\" \/>\n\t<source srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1628\/image-thumb__1628__additional-information-modal\/product_TOPTICA_CLS_add-info_phase-noise.25b575c6.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1628\/image-thumb__1628__additional-information-modal\/[email protected] 2x\" width=\"1024\" height=\"791\" type=\"image\/jpeg\" \/>\n\t<img class=\"w-full h-full object-contain object-center\" src=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1628\/image-thumb__1628__additional-information-modal\/product_TOPTICA_CLS_add-info_phase-noise.25b575c6.jpg\" width=\"1024\" height=\"791\" alt=\"Phase noise power spectral density (PSD) of a CLS at 729 nm obtained by cross-correlation analyses of beat-notes with two reference lasers. \" title=\"Phase noise power spectral density (PSD) of a CLS at 729 nm obtained by cross-correlation analyses of beat-notes with two reference lasers. \" loading=\"lazy\" srcset=\"\/lasers\/narrow-linewidth-lasers\/CLS\/1628\/image-thumb__1628__additional-information-modal\/product_TOPTICA_CLS_add-info_phase-noise.25b575c6.jpg 1x, \/lasers\/narrow-linewidth-lasers\/CLS\/1628\/image-thumb__1628__additional-information-modal\/[email protected] 2x\" \/>\n<\/picture>\n","title":"Phase noise power spectral density (PSD) of a CLS at 729 nm obtained by cross-correlation analyses of beat-notes with two reference lasers. "}]'/>
1520			</div>
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1528</section>
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1544<section class="bg-black   "  id="testimonials"  data-spacing-top="large" data-spacing-bottom="large">
1545	<div class="grid grid-cols-4 sm:grid-cols-12 container max-w-xs sm:max-w-xl md:max-w-3xl xl:max-w-7xl mx-auto gap-4 sm:gap-5 md:gap-6 py-4">
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1605<section class="bg-black  pb-0 "  id="downloads"  data-spacing-top="large" data-spacing-bottom="none">
1606	<div class="grid grid-cols-4 sm:grid-cols-12 container max-w-xs sm:max-w-xl md:max-w-3xl xl:max-w-7xl mx-auto gap-4 sm:gap-5 md:gap-6 py-4">
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1618	<h2 class="col-span-12 font-bold pb-[40px] lg:pb-[50px] -mb-4 sm:-mb-5 md:-mb-6 text-section-head-sm md:text-section-head-md lg:text-section-head-lg">
1619				
1620		        Downloads
1621        	</h2>
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1646<div class="w-full  use-icon">
1647	<div class="border-b border-toptica-grey-4 pb-2 mb-5">
1648		<h2 class="text-link-list-title font-bold text-white">
1649							PDF
1650					</h2>
1651	</div>
1652
1653			<ul class="">
1654							<li>
1655																<h3>
1656							<a href="/downloads/pif/product-info_TOPTICA_CLS_en.pdf"
1657								 class="text-white text-link-list-link hover:text-primary hover:font-bold transition-colors"								 target="_blank"								 title="Product information CLS"															>Product information CLS</a>
1658						</h3>
1659														</li>
1660							<li>
1661																<h3>
1662							<a href="/downloads/whitepapers/white-paper_TOPTICA_CLS.pdf"
1663								 class="text-white text-link-list-link hover:text-primary hover:font-bold transition-colors"								 target="_blank"								 title="Design, implementation, and performance of CLS"															>Design, implementation, and performance of CLS</a>
1664						</h3>
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1699	<div class="grid grid-cols-4 sm:grid-cols-12 container max-w-xs sm:max-w-xl md:max-w-3xl xl:max-w-7xl mx-auto gap-4 sm:gap-5 md:gap-6 py-4">
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1712				
1713		        Literature
1714        	</h2>
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1729
1730	<div class="col-span-12 lg:w-auto lg:col-span-12">
1731		
1732
1733
1734
1735                                    
1736            
1737                                    
1738<div class="w-full  use-icon">
1739	<div class="border-b border-toptica-grey-4 pb-2 mb-5">
1740		<h2 class="text-link-list-title font-bold text-white">
1741							Papers
1742					</h2>
1743	</div>
1744
1745			<ul class="flex flex-col space-y-4">
1746							<li>
1747																<h3>
1748							<a href="http://dx.doi.org/10.1117/12.3081791"
1749								 class="text-white font-bold text-link-list-link hover:text-primary transition-colors"																															>Industrial implementation of an ultrastable clock laser for quantum technologies</a>
1750						</h3>
1751																<div class="text-white text-link-list-link font-light">
1752							J. Stuhler, F. Schäfer, Proceedings Volume 13919, Quantum Computing, Communication, and Simulation VI; 1391904 (2026)
1753						</div>
1754									</li>
1755					</ul>
1756	
1757
1758</div>
1759
1760                
1761                            
1762                    
1763
1764	</div>
1765	<div class="col-span-12 lg:w-auto lg:col-span-12">
1766		
1767
1768
1769
1770                                    
1771            
1772                                    
1773<div class="w-full  use-icon">
1774	<div class="border-b border-toptica-grey-4 pb-2 mb-5">
1775		<h2 class="text-link-list-title font-bold text-white">
1776							Whitepaper
1777					</h2>
1778	</div>
1779
1780			<ul class="flex flex-col space-y-4">
1781							<li>
1782																<h3>
1783							<a href="/downloads/whitepapers/white-paper_TOPTICA_CLS.pdf"
1784								 class="text-white font-bold text-link-list-link hover:text-primary transition-colors"								 target="_blank"																							>Design, implementation, and performance of CLS</a>
1785						</h3>
1786																<div class="text-white text-link-list-link font-light">
1787							Dr. Florian Schäfer, Dewni Pathegama, Dr. Filippo Bregolin, TOPTICA Clock Laser System
1788						</div>
1789									</li>
1790					</ul>
1791	
1792
1793</div>
1794
1795                
1796                            
1797                    
1798
1799	</div>
1800
1801                
1802                            
1803                    
1804
1805	</div>
1806</section>
1807
1808                
1809                            
1810                    
1811
1812
1813
1814
1815                                    
1816            
1817                                    
1818
1819
1820
1821
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1823	<div class="grid grid-cols-4 sm:grid-cols-12 container max-w-xs sm:max-w-xl md:max-w-3xl xl:max-w-7xl mx-auto gap-4 sm:gap-5 md:gap-6 py-4">
1824		
1825
1826
1827
1828                                    
1829            
1830                                    
1831
1832
1833
1834	
1835	<h2 class="col-span-12 font-bold pb-[40px] lg:pb-[50px] -mb-4 sm:-mb-5 md:-mb-6 text-section-head-sm md:text-section-head-md lg:text-section-head-lg">
1836				
1837		        Related Products
1838        	</h2>
1839
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1843
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1846
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1848
1849                                    
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1852	<div class="col-span-12">
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1855				<related-products :products="[{&quot;image&quot;:&quot;&lt;picture class=\&quot;contents\&quot;&gt;\n\t&lt;source srcset=\&quot;\/lasers\/narrow-linewidth-lasers\/DL-pro\/348\/image-thumb__348__related-products\/product_TOPTICA_dl-pro_main.d3df5bbf.webp 1
1855x, \/lasers\/narrow-linewidth-lasers\/DL-pro\/348\/image-thumb__348__related-products\/[email protected] 2x\&quot; width=\&quot;240\&quot; height=\&quot;228\&quot; type=\&quot;image\/webp\&quot; \/&gt;\n\t&lt;source srcset=\&quot;\/lasers\/narrow-linewidth-lasers\/DL-pro\/348\/image-thumb__348__related-products\/product_TOPTICA_dl-pro_main.136144ea.png 1x, \/lasers\/narrow-linewidth-lasers\/DL-pro\/348\/image-thumb__348__related-products\/[email protected] 2x\&quot; width=\&quot;240\&quot; height=\&quot;228\&quot; type=\&quot;image\/png\&quot; \/&gt;\n\t&lt;img class=\&quot;w-full h-full object-contain object-center\&quot; src=\&quot;\/lasers\/narrow-linewidth-lasers\/DL-pro\/348\/image-thumb__348__related-products\/product_TOPTICA_dl-pro_main.136144ea.png\&quot; width=\&quot;240\&quot; height=\&quot;228\&quot; alt=\&quot;TOPTICA DL pro - Narrow linewidth, tunable diode laser 369 to 519 nm, 628 to 1770 nm\&quot; loading=\&quot;lazy\&quot; srcset=\&quot;\/lasers\/narrow-linewidth-lasers\/DL-pro\/348\/image-thumb__348__related-products\/product_TOPTICA_dl-pro_main.136144ea.png 1x, \/lasers\/narrow-linewidth-lasers\/DL-pro\/348\/image-thumb__348__related-products\/[email protected] 2x\&quot; \/&gt;\n&lt;\/picture&gt;\n&quot;,&quot;imageThumbnail&quot;:&quot;\/lasers\/narrow-linewidth-lasers\/DL-pro\/348\/image-thumb__348__related-products\/product_TOPTICA_dl-pro_main.136144ea.png&quot;,&quot;headline&quot;:&quot;DL pro&quot;,&quot;description&quot;:&quot;&lt;div&gt;Narrow linewidth, tunable diode laser&lt;\/div&gt;&quot;,&quot;link&quot;:&quot;\/products\/narrow-linewidth-lasers\/dl-pro&quot;},{&quot;image&quot;:&quot;&lt;picture class=\&quot;contents\&quot;&gt;\n\t&lt;source srcset=\&quot;\/lasers\/narrow-linewidth-lasers\/TA-pro\/2773\/image-thumb__2773__related-products\/product_TOPTICA_ta-pro_main.5a22557e.webp 1x, \/lasers\/narrow-linewidth-lasers\/TA-pro\/2773\/image-thumb__2773__related-products\/[email protected] 2x\&quot; width=\&quot;240\&quot; height=\&quot;172\&quot; type=\&quot;image\/webp\&quot; \/&gt;\n\t&lt;source srcset=\&quot;\/lasers\/narrow-linewidth-lasers\/TA-pro\/2773\/image-thumb__2773__related-products\/product_TOPTICA_ta-pro_main.accf4c4f.png 1x, \/lasers\/narrow-linewidth-lasers\/TA-pro\/2773\/image-thumb__2773__related-products\/[email protected] 2x\&quot; width=\&quot;240\&quot; height=\&quot;172\&quot; type=\&quot;image\/png\&quot; \/&gt;\n\t&lt;img class=\&quot;w-full h-full object-contain object-center\&quot; src=\&quot;\/lasers\/narrow-linewidth-lasers\/TA-pro\/2773\/image-thumb__2773__related-products\/product_TOPTICA_ta-pro_main.accf4c4f.png\&quot; width=\&quot;240\&quot; height=\&quot;172\&quot; alt=\&quot;\&quot; loading=\&quot;lazy\&quot; srcset=\&quot;\/lasers\/narrow-linewidth-lasers\/TA-pro\/2773\/image-thumb__2773__related-products\/product_TOPTICA_ta-pro_main.accf4c4f.png 1x, \/lasers\/narrow-linewidth-lasers\/TA-pro\/2773\/image-thumb__2773__related-products\/[email protected] 2x\&quot; \/&gt;\n&lt;\/picture&gt;\n&quot;,&quot;imageThumbnail&quot;:&quot;\/lasers\/narrow-linewidth-lasers\/TA-pro\/2773\/image-thumb__2773__related-products\/product_TOPTICA_ta-pro_main.accf4c4f.png&quot;,&quot;headline&quot;:&quot;TA pro&quot;,&quot;description&quot;:&quot;&lt;div&gt;Amplified, narrow linewidth diode laser&lt;\/div&gt;&quot;,&quot;link&quot;:&quot;\/products\/narrow-linewidth-lasers\/ta-pro&quot;},{&quot;image&quot;:&quot;&lt;picture class=\&quot;contents\&quot;&gt;\n\t&lt;source srcset=\&quot;\/lasers\/narrow-linewidth-lasers\/NLO\/SHG-pro\/443\/image-thumb__443__related-products\/product_TOPTICA_shg-pro_main.56d7f312.webp 1x, \/lasers\/narrow-linewidth-lasers\/NLO\/SHG-pro\/443\/image-thumb__443__related-products\/[email protected] 2x\&quot; width=\&quot;240\&quot; height=\&quot;120\&quot; type=\&quot;image\/webp\&quot; \/&gt;\n\t&lt;source srcset=\&quot;\/lasers\/narrow-linewidth-lasers\/NLO\/SHG-pro\/443\/image-thumb__443__related-products\/product_TOPTICA_shg-pro_main.6e5307a3.png 1x, \/lasers\/narrow-linewidth-lasers\/NLO\/SHG-pro\/443\/image-thumb__443__related-products\/[email protected] 2x\&quot; width=\&quot;240\&quot; height=\&quot;120\&quot; type=\&quot;image\/png\&quot; \/&gt;\n\t&lt;img class=\&quot;w-full h-full object-contain object-center\&quot; src=\&quot;\/lasers\/narrow-linewidth-lasers\/NLO\/SHG-pro\/443\/image-thumb__443__related-products\/product_TOPTICA_shg-pro_main.6e5307a3.png\&quot; width=\&quot;240\&quot; height=\&quot;120\&quot; alt=\&quot;TOPTICA SHG pro - Frequency doubling cavity 205 nm to 685 nm\&quot; loading=\&quot;lazy\&quot; srcset=\&quot;\/lasers\/narrow-linewidth-lasers\/NLO\/SHG-pro\/443\/image-thumb__443__related-products\/product_TOPTICA_shg-pro_main.6e5307a3.png 1x, \/lasers\/narrow-linewidth-lasers\/NLO\/SHG-pro\/443\/image-thumb__443__related-products\/[email protected] 2x\&quot; \/&gt;\n&lt;\/picture&gt;\n&quot;,&quot;imageThumbnail&quot;:&quot;\/lasers\/narrow-linewidth-lasers\/NLO\/SHG-pro\/443\/image-thumb__443__related-products\/product_TOPTICA_shg-pro_main.6e5307a3.png&quot;,&quot;headline&quot;:&quot;SHG pro&quot;,&quot;description&quot;:&quot;&lt;div&gt;Frequency doubling cavity&lt;\/div&gt;&quot;,&quot;link&quot;:&quot;\/products\/narrow-linewidth-lasers\/shg-pro&quot;},{&quot;image&quot;:&quot;&lt;picture class=\&quot;contents\&quot;&gt;\n\t&lt;source srcset=\&quot;\/lasers\/frequency-combs\/DFC_Core_Plus\/426\/image-thumb__426__related-products\/product_TOPTICA_dfc-core-plus_main.df3ba8c2.webp 1x, \/lasers\/frequency-combs\/DFC_Core_Plus\/426\/image-thumb__426__related-products\/[email protected] 2x\&quot; width=\&quot;240\&quot; height=\&quot;126\&quot; type=\&quot;image\/webp\&quot; \/&gt;\n\t&lt;source srcset=\&quot;\/lasers\/frequency-combs\/DFC_Core_Plus\/426\/image-thumb__426__related-products\/product_TOPTICA_dfc-core-plus_main.e36f54fe.png 1x, \/lasers\/frequency-combs\/DFC_Core_Plus\/426\/image-thumb__426__related-products\/[email protected] 2x\&quot; width=\&quot;240\&quot; height=\&quot;126\&quot; type=\&quot;image\/png\&quot; \/&gt;\n\t&lt;img class=\&quot;w-full h-full object-contain object-center\&quot; src=\&quot;\/lasers\/frequency-combs\/DFC_Core_Plus\/426\/image-thumb__426__related-products\/product_TOPTICA_dfc-core-plus_main.e36f54fe.png\&quot; width=\&quot;240\&quot; height=\&quot;126\&quot; alt=\&quot;TOPTICA DFC - Difference frequency comb 420 to 2200 nm\&quot; loading=\&quot;lazy\&quot; srcset=\&quot;\/lasers\/frequency-combs\/DFC_Core_Plus\/426\/image-thumb__426__related-products\/product_TOPTICA_dfc-core-plus_main.e36f54fe.png 1x, \/lasers\/frequency-combs\/DFC_Core_Plus\/426\/image-thumb__426__related-products\/[email protected] 2x\&quot; \/&gt;\n&lt;\/picture&gt;\n&quot;,&quot;imageThumbnail&quot;:&quot;\/lasers\/frequency-combs\/DFC_Core_Plus\/426\/image-thumb__426__related-products\/product_TOPTICA_dfc-core-plus_main.e36f54fe.png&quot;,&quot;headline&quot;:&quot;DFC&quot;,&quot;description&quot;:&quot;&lt;div&gt;Difference frequency comb&lt;\/div&gt;&quot;,&quot;link&quot;:&quot;\/products\/frequency-combs\/dfc&quot;}
1855]" slider-direction="ltr" :autoplay-interval="5000"></related-products>
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2005                                </clipPath>
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2007                        </svg>
2008
2009                    </a>
2010                    <div class="mt-33px is-prose-toptica-grey-2">
2011                        
2012
2013
2014
2015                                    
2016            
2017                                    
2018
2019<div class='prose max-w-none prose-white prose-wysiwyg-links [&>*:first-child]:mt-0 use-icon'><p>TOPTICA Photonics develops and manufactures high-end laser systems for more than 25 years.</p></div>
2020
2021
2022                
2023                            
2024                    
2025
2026                    </div>
2027                </div>
2028                <div class="col-start-9 col-span-4 max-sm:col-start-1 max-sm:col-span-12 lg:col-start-5 lg:col-span-8">
2029                    <div class="flex   h-full gap-10 justify-end items-end max-sm:justify-center max-sm:pt-5 lg:justify-between lg:items-start">
2030                        <div class="footer-navigation text-base gap-10 hidden lg:flex lg:pl-10">
2031                                                                                                    <ul class="list-none pl-0 m-0 flex flex-col gap-5 mr-0 md:[&:last-child]:mr-10 lg:[&:last-child]:mr-0 lg:[&:not(:last-child)]:mr-7">
2032            <li>
2033                <a 
2034                    href="/company/responsibility/compliance" 
2035                    class="no-underline hover:text-primary focus:text-primary focus:outline-none transition-colors text-base font-bold">Responsibility</a>
2036            </li>
2037                                                <li>
2038                        <a 
2039                            href="/company/responsibility/compliance" 
2040                            class="no-underline text-toptica-grey-2 hover:text-primary focus:text-primary focus:outline-none transition-colors font-normal">Compliance</a>
2041                    </li>
2042                                    <li>
2043                        <a 
2044                            href="/company/responsibility/material-compliance" 
2045                            class="no-underline text-toptica-grey-2 hover:text-primary focus:text-primary focus:outline-none transition-colors font-normal">Material Compliance</a>
2046                    </li>
2047                                    <li>
2048                        <a 
2049                            href="/company/responsibility/quality-management" 
2050                            class="no-underline text-toptica-grey-2 hover:text-primary focus:text-primary focus:outline-none transition-colors font-normal">Quality Management</a>
2051                    </li>
2052                                    <li>
2053                        <a 
2054                            href="/company/responsibility/sustainability" 
2055                            class="no-underline text-toptica-grey-2 hover:text-primary focus:text-primary focus:outline-none transition-colors font-normal">Sustainability</a>
2056                    </li>
2057                                    </ul>
2058            <ul class="list-none pl-0 m-0 flex flex-col gap-5 mr-0 md:[&:last-child]:mr-10 lg:[&:last-child]:mr-0 lg:[&:not(:last-child)]:mr-7">
2059            <li>
2060                <a 
2061                    href="https://join.toptica.com" 
2062                    class="no-underline hover:text-primary focus:text-primary focus:outline-none transition-colors text-base font-bold">Career</a>
2063            </li>
2064                                                <li>
2065                        <a 
2066                            href="https://join.toptica.com/en" 
2067                            class="no-underline text-toptica-grey-2 hover:text-primary focus:text-primary focus:outline-none transition-colors font-normal">This is us</a>
2068                    </li>
2069                                    <li>
2070                        <a 
2071                            href="https://join.toptica.com/en/opportunities/your-opportunities" 
2072                            class="no-underline text-toptica-grey-2 hover:text-primary focus:text-primary focus:outline-none transition-colors font-normal">Your possibilities</a>
2073                    </li>
2074                                    <li>
2075                        <a 
2076                            href="https://join.toptica.com/en/jobs/job-offers" 
2077                            class="no-underline text-toptica-grey-2 hover:text-primary focus:text-primary focus:outline-none transition-colors font-normal">Jobs</a>
2078                    </li>
2079                                    </ul>
2080            <ul class="list-none pl-0 m-0 flex flex-col gap-5 mr-0 md:[&:last-child]:mr-10 lg:[&:last-child]:mr-0 lg:[&:not(:last-child)]:mr-7">
2081            <li>
2082                <a 
2083                    href="/contact-us" 
2084                    class="no-underline hover:text-primary focus:text-primary focus:outline-none transition-colors text-base font-bold">Contact</a>
2085            </li>
2086                                                <li>
2087                        <a 
2088                            href="/request-a-quotation" 
2089                            class="no-underline text-toptica-grey-2 hover:text-primary focus:text-primary focus:outline-none transition-colors font-normal">Request a quotation</a>
2090                    </li>
2091                                    <li>
2092                        <a 
2093                            href="/request-a-demo" 
2094                            class="no-underline text-toptica-grey-2 hover:text-primary focus:text-primary focus:outline-none transition-colors font-normal">Request a demo</a>
2095                    </li>
2096                                    <li>
2097                        <a 
2098                            href="/contact-an-expert" 
2099                            class="no-underline text-toptica-grey-2 hover:text-primary focus:text-primary focus:outline-none transition-colors font-normal">Talk to an expert</a>
2100                    </li>
2101                                    <li>
2102                        <a 
2103                            href="https://www.toptica.com/beat-the-clock/" 
2104                            class="no-underline text-toptica-grey-2 hover:text-primary focus:text-primary focus:outline-none transition-colors font-normal">Bored?</a>
2105                    </li>
2106                                    </ul>
2107    
2108                            
2109                        </div>
2110                        <div class="footer-social">
2111                                <ul class="flex flex-nowrap list-none pl-0">
2112                    <li class="mt-0 mb-1 pl-0 [&:not(:last-child)]:mr-3">
2113                <a 
2114                    class="text-xs text-toptica-grey-4 no-underline hover:text-primary focus:text-primary focus:outline-none transition-colors"
2115                    href="https://www.linkedin.com/company/toptica-photonics/" target="_blank">
2116                                            
2117                                                                            
2118                        <svg width="32" height="32" viewBox="0 0 32 32" fill="none" xmlns="http://www.w3.org/2000/svg">
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2129                        
2130                </a>
2131
2132            </li>
2133                    <li class="mt-0 mb-1 pl-0 [&:not(:last-child)]:mr-3">
2134                <a 
2135                    class="text-xs text-toptica-grey-4 no-underline hover:text-primary focus:text-primary focus:outline-none transition-colors"
2136                    href="https://www.youtube.com/user/TOPTICAPhotonics" target="_blank">
2137                                            
2138                                                                            
2139                        <svg width="32" height="32" viewBox="0 0 32 32" fill="none" xmlns="http://www.w3.org/2000/svg">
2140<g clip-path="url(#clip0_5829_1790)">
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2150                        
2151                </a>
2152
2153            </li>
2154                    <li class="mt-0 mb-1 pl-0 [&:not(:last-child)]:mr-3">
2155                <a 
2156                    class="text-xs text-toptica-grey-4 no-underline hover:text-primary focus:text-primary focus:outline-none transition-colors"
2157                    href="https://www.instagram.com/topticaphotonics/" target="_blank">
2158                                            
2159                                                                            
2160                        <svg width="32" height="32" viewBox="0 0 32 32" fill="none" xmlns="http://www.w3.org/2000/svg">
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2170
2171                        
2172                </a>
2173
2174            </li>
2175            </ul>
2176
2177                        </div>
2178                    </div>
2179                </div>
2180            </div>
2181            <hr class="h-px my-30px bg-toptica-grey-5 border-0 lg:hidden">
2182            <div class="flex justify-between gap-10 max-sm:flex-col max-sm:gap-13 lg:hidden">
2183                                                            <ul class="list-none pl-0 m-0 flex flex-col gap-5 mr-0 md:[&:last-child]:mr-10 lg:[&:last-child]:mr-0 lg:[&:not(:last-child)]:mr-7">
2184            <li>
2185                <a 
2186                    href="/company/responsibility/compliance" 
2187                    class="no-underline hover:text-primary focus:text-primary focus:outline-none transition-colors text-base font-bold">Responsibility</a>
2188            </li>
2189                                                <li>
2190                        <a 
2191                            href="/company/responsibility/compliance" 
2192                            class="no-underline text-toptica-grey-2 hover:text-primary focus:text-primary focus:outline-none transition-colors font-normal">
2192Compliance</a>
2193                    </li>
2194                                    <li>
2195                        <a 
2196                            href="/company/responsibility/material-compliance" 
2197                            class="no-underline text-toptica-grey-2 hover:text-primary focus:text-primary focus:outline-none transition-colors font-normal">Material Compliance</a>
2198                    </li>
2199                                    <li>
2200                        <a 
2201                            href="/company/responsibility/quality-management" 
2202                            class="no-underline text-toptica-grey-2 hover:text-primary focus:text-primary focus:outline-none transition-colors font-normal">Quality Management</a>
2203                    </li>
2204                                    <li>
2205                        <a 
2206                            href="/company/responsibility/sustainability" 
2207                            class="no-underline text-toptica-grey-2 hover:text-primary focus:text-primary focus:outline-none transition-colors font-normal">Sustainability</a>
2208                    </li>
2209                                    </ul>
2210            <ul class="list-none pl-0 m-0 flex flex-col gap-5 mr-0 md:[&:last-child]:mr-10 lg:[&:last-child]:mr-0 lg:[&:not(:last-child)]:mr-7">
2211            <li>
2212                <a 
2213                    href="https://join.toptica.com" 
2214                    class="no-underline hover:text-primary focus:text-primary focus:outline-none transition-colors text-base font-bold">Career</a>
2215            </li>
2216                                                <li>
2217                        <a 
2218                            href="https://join.toptica.com/en" 
2219                            class="no-underline text-toptica-grey-2 hover:text-primary focus:text-primary focus:outline-none transition-colors font-normal">This is us</a>
2220                    </li>
2221                                    <li>
2222                        <a 
2223                            href="https://join.toptica.com/en/opportunities/your-opportunities" 
2224                            class="no-underline text-toptica-grey-2 hover:text-primary focus:text-primary focus:outline-none transition-colors font-normal">Your possibilities</a>
2225                    </li>
2226                                    <li>
2227                        <a 
2228                            href="https://join.toptica.com/en/jobs/job-offers" 
2229                            class="no-underline text-toptica-grey-2 hover:text-primary focus:text-primary focus:outline-none transition-colors font-normal">Jobs</a>
2230                    </li>
2231                                    </ul>
2232            <ul class="list-none pl-0 m-0 flex flex-col gap-5 mr-0 md:[&:last-child]:mr-10 lg:[&:last-child]:mr-0 lg:[&:not(:last-child)]:mr-7">
2233            <li>
2234                <a 
2235                    href="/contact-us" 
2236                    class="no-underline hover:text-primary focus:text-primary focus:outline-none transition-colors text-base font-bold">Contact</a>
2237            </li>
2238                                                <li>
2239                        <a 
2240                            href="/request-a-quotation" 
2241                            class="no-underline text-toptica-grey-2 hover:text-primary focus:text-primary focus:outline-none transition-colors font-normal">Request a quotation</a>
2242                    </li>
2243                                    <li>
2244                        <a 
2245                            href="/request-a-demo" 
2246                            class="no-underline text-toptica-grey-2 hover:text-primary focus:text-primary focus:outline-none transition-colors font-normal">Request a demo</a>
2247                    </li>
2248                                    <li>
2249                        <a 
2250                            href="/contact-an-expert" 
2251                            class="no-underline text-toptica-grey-2 hover:text-primary focus:text-primary focus:outline-none transition-colors font-normal">Talk to an expert</a>
2252                    </li>
2253                                    <li>
2254                        <a 
2255                            href="https://www.toptica.com/beat-the-clock/" 
2256                            class="no-underline text-toptica-grey-2 hover:text-primary focus:text-primary focus:outline-none transition-colors font-normal">Bored?</a>
2257                    </li>
2258                                    </ul>
2259    
2260                                        </div>
2261            <hr class="h-px my-30px bg-toptica-grey-5 border-0">
2262            <div class="flex flex-wrap justify-between items-left flex-col md:flex-row md:items-center md:flex-nowrap footer-meta">
2263                <div class="text-base text-toptica-grey-2 prose max-w-none">© 2026 TOPTICA Photonics SE</div>
2264                <div class="text-base prose max-w-none mt-2 md:mt-0">
2265                        <ul class="flex flex-wrap list-none pl-0 gap-5">
2266                    <li class="mt-0 mb-1 pl-0 [&:not(:last-child)]:mr-3">
2267                <a 
2268                    class="text-xs text-toptica-grey-4 no-underline hover:text-primary focus:text-primary focus:outline-none transition-colors"
2269                    href="https://www.toptica.com/company/legal/imprint">Imprint</a>
2270            </li>
2271                    <li class="mt-0 mb-1 pl-0 [&:not(:last-child)]:mr-3">
2272                <a 
2273                    class="text-xs text-toptica-grey-4 no-underline hover:text-primary focus:text-primary focus:outline-none transition-colors"
2274                    href="https://www.toptica.com/company/legal/privacy-policy">Privacy policy</a>
2275            </li>
2276                    <li class="mt-0 mb-1 pl-0 [&:not(:last-child)]:mr-3">
2277                <a 
2278                    class="text-xs text-toptica-grey-4 no-underline hover:text-primary focus:text-primary focus:outline-none transition-colors"
2279                    href="https://www.toptica.com/company/legal/terms">Terms of sale</a>
2280            </li>
2281                    <li class="mt-0 mb-1 pl-0 [&:not(:last-child)]:mr-3">
2282                <a 
2283                    class="text-xs text-toptica-grey-4 no-underline hover:text-primary focus:text-primary focus:outline-none transition-colors"
2284                    href="#">Cookies</a>
2285            </li>
2286            </ul>
2287
2288                </div>
2289            </div>
2290        </div>
2291    </div>
2292</section>
2293												</footer>
2294
2295		</div>
2296
2297		    
2297<script>
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2298ssories","js.form.common.accessories.fiberout.label":"FiberOut - Fiber Output Coupler","js.form.common.accessories.fiberout.value":"FiberOut - Fiber Output Coupler","js.form.common.accessories.iwave.label":"iWave Add-On for iBeam smart","js.form.common.accessories.iwave.value":"iWave Add-On for iBeam smart","js.form.common.accessories.powersupply.label":"Power supply for iBeam smart","js.form.common.accessories.powersupply.value":"Power supply for iBeam smart","js.form.common.accessories.smartdock.description":"Coupling efficiency typ. 75%","js.form.common.accessories.smartdock.label":"SmartDock - Fiber Coupler for iBeam smart","js.form.common.accessories.smartdock.value":"SmartDock - Fiber Coupler for iBeam smart","js.form.common.application":"Application","js.form.common.application.placeholder":"Please select your application","js.form.common.application.required":"Application is required","js.form.common.category":"Category","js.form.common.city":"City","js.form.common.company":"Company \/ Institute","js.form.common.company.required":"Company \/ Institute is required","js.form.common.complete-selection":"Please complete your selection","js.form.common.country":"Country","js.form.common.country.defaultOption":"Please select your country","js.form.common.country.required":"Country is required","js.form.common.email":"E-Mail","js.form.common.email.already-subscribed":"E-mail already subscribed to newsletter","js.form.common.email.invalid":"Please enter a valid email address.","js.form.common.email.required":"Email is required","js.form.common.email.wrongFormat":"Wrong Email Format","js.form.common.exhibitionAppointment":"Please contact me to arrange an appointment during the exhibition","js.form.common.firstname":"First Name","js.form.common.guestTicket":"Please send me a guest ticket","js.form.common.lastname":"Last Name","js.form.common.lastname.required":"Last Name is required","js.form.common.message":"Message","js.form.common.message.placeholder":"Your message to us","js.form.common.message.required":"Message is required","js.form.common.name":"Name","js.form.common.options":"Options","js.form.common.options.cleanup-filter.label":"iBeam smart - CleanUp-Filter Add-On","js.form.common.options.cleanup-filter.value":"iBeam smart - CleanUp-Filter Add-On","js.form.common.options.pulse-option.label":"iBeam smart - Pulse Option","js.form.common.options.pulse-option.value":"iBeam smart - Pulse Option","js.form.common.options.wavelength-selection.label":"iBeam smart - Wavelength selection","js.form.common.options.wavelength-selection.value":"iBeam smart - Wavelength selection","js.form.common.personal-info":"Personal Information","js.form.common.productname":"Product Name","js.form.common.productvariant":"Product Variant","js.form.common.productvariant.defaultOption":"Please select a product variant","js.form.common.provide-update":"Provide an update","js.form.common.provide-update-description":"Have additional information? 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Please try again.","js.form.common.submit-success":"Submitted Successfully","js.form.common.success-message":"Successfully sent!","js.form.common.talkto":"Talk to","js.form.common.talkto-options.im-not-sure-surprise-me":"I'm not sure \u2026 surprise me ;-)","js.form.common.talkto-options.life-sciences-expert":"Life sciences expert","js.form.common.talkto-options.measurement-and-processing-expert":"Measurement and processing expert","js.form.common.talkto-options.quantum-technologies-expert":"Quantum technologies expert","js.form.common.telephone":"Telephone","js.form.common.terms.label":"I accept the Privacy Policy","js.form.common.terms.required":"You must accept the Privacy Policy","js.form.common.update-success":"Request updated successfully!","js.form.common.validation-error":"Please correct the errors in the form.","js.form.common.zip":"Zip Code","js.form.laserrackconfiguration.configure-your-own-t-rack":"Configure your own T-RACK","js.form.laserrackconfiguration.height-units-used":"Height units used:","js.form.laserrackconfiguration.mdfc-description":"Modular Difference Frequency Comb System","js.form.laserrackconfiguration.mdfc-features.1":"Compact, robust, high-end and convenient","js.form.laserrackconfiguration.mdfc-features.2":"Wavelength coverage: 420 - 2000 nm","js.form.laserrackconfiguration.mdl-pro-description":"Modular Tunable Single-Mode Diode Laser Unit","js.form.laserrackconfiguration.mdl-pro-features.1":"Supporting up to 4 ECDL or DFB laser modules","js.form.laserrackconfiguration.mdl-pro-features.2":"Wavelength coverage: 369 .. 1770 nm","js.form.laserrackconfiguration.mom-description":"Modular Opto-Mechanics Breadboard Unit","js.form.laserrackconfiguration.mom-features.1":"Optical breadboard for custom solutions","js.form.laserrackconfiguration.mom-features.2":"Vibration isolation and pull-out mechanism","js.form.laserrackconfiguration.mshg-pro-description":"Modular Frequency-Doubled Tunable Laser Unit","js.form.laserrackconfiguration.mshg-pro-features.1":"Efficient frequency-doubling resonator design","js.form.laserrackconfiguration.mshg-pro-features.2":"Wavelength coverage: 330 .. 780 nm","js.form.laserrackconfiguration.mta-pro-description":"Modular Amplified Tunable Single-Mode Laser Unit","js.form.laserrackconfiguration.mta-pro-features.1":"Supporting up to 2 amplified laser modules","js.form.laserrackconfiguration.mta-pro-features.2":"Wavelength coverage: 660 .. 1770 nm","js.form.laserrackconfiguration.rack-units-left":"Rack units left:","js.form.laserrackconfiguration.wavelength-meter-description":"Rack-Mountable HighFinesse Wavelength Meter","js.form.laserrackconfiguration.wavelength-meter-features.1":"Best absolute accuracy down to 2 MHz","js.form.laserrackconfiguration.wavelength-meter-features.2":"Wavelength coverage: 192 nm .. 11 \u03bc","js.form.laserrackconfiguration.your-configuration":"Your configuration:","js.form.newslettersubscription.info":"You have to specify your e-mail address to register for TOPTICA's newsletter. All other information is optional.","js.form.requestiBeamSmart.accessories.fiberout.description.option-1":"Fiber collimator with variable focus","js.form.requestiBeamSmart.accessories.fiberout.description.option-2":"Including collimation lens","js.form.requestiBeamSmart.accessories.fiberout.description.option-3":"Typical beam sizes out of SM-fibers: 0.6 mm - 3.5 mm (1\/e\u00b2, diameter)","
2298js.form.requestiBeamSmart.accessories.iwave.description.option-1":"Available for iBeam smart 375nm - 515nm","js.form.requestiBeamSmart.accessories.iwave.description.option-2":"Add-On will reduce linewidth to typ. &gt; 0.1nm","js.form.requestiBeamSmart.accessories.iwave.description.option-3":"With add-on, the output power will be typically 50% of original iBeam smart power specification.","js.form.requestiBeamSmart.accessories.powersupply.description.option-1":"Available for iBeam smart 375nm - 515nm","js.form.requestiBeamSmart.accessories.powersupply.description.option-2":"Add-On will reduce linewidth to typ. < 0.1nm","js.form.requestiBeamSmart.accessories.powersupply.description.option-3":"With add-on, the output power will be typically 50% of original iBeam smart power specification.","js.form.requestiBeamSmart.accessories.smartdock.description":"Coupling efficiency typ. 75%","js.form.requestiBeamSmart.options.cleanup-filter.description.option-1":"Available at 405 nm, 488 nm and 640 nm","js.form.requestiBeamSmart.options.cleanup-filter.description.option-2":"Typical bandwidth: 6-10 nm","js.form.requestiBeamSmart.options.pulse-option.description.option-1":"Allows external asynchronous digital modulation","js.form.requestiBeamSmart.options.pulse-option.description.option-2":"Modulation bandwidth up to 250 MHz","js.form.requestiBeamSmart.options.wavelength-selection.description.option-1":"Emission wavelength will be selected to better than \u00b1 1 nm within the standard wavelength range of the laser system","js.form.requestiBeamSmart.options.wavelength-selection.description.option-2":"PLEASE NOTE: please inquire, to make sure actual center wavelength is available! Increased lead-time is probable.","js.helpspot.submit-request.access-key":"Your Access Key","js.helpspot.submit-request.access-key-description":"The access key provided above can be used to check the status of your request. For quick access to updates bookmark this page.","js.helpspot.submit-request.description":"Please complete the form below detailing your request and a member of our support staff will respond as soon as possible.","js.helpspot.submit-request.label":"I agree to the <a href=\"https:\/\/www.toptica.com\/toptica\/privacy-policy\" target=\"_blank\" rel=\"noopener noreferrer\" class=\"text-primary underline hover:text-primary\">Privacy Policy<\/a>","js.helpspot.submit-request.phone":"Phone","js.helpspot.submit-request.request-details":"Request Details","js.helpspot.submit-request.required-field":"Please complete your selection","js.helpspot.submit-request.success":"Request submitted successfully!","js.helpspot.submit-request.title":"Submit a Request for Assistance"};
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