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53 54<!-- End Matomo Tag Manager --> 55 56 57 <link crossorigin rel="stylesheet" href="/build/assets/index-FH-Mau-y.css"> 58 59 60 61 <link rel="canonical" href="https://www.toptica.com/products/narrow-linewidth-lasers/cls"/> 62 63 <link rel="alternate" hreflang="en" href="https://www.toptica.com/products/narrow-linewidth-lasers/cls"/> 64 <link rel="alternate" hreflang="zh" href="https://www.toptica-china.com/products/narrow-linewidth-lasers/cls"/> 65 <link rel="alternate" hreflang="ja" href="https://www.toptica.com/ja/products/narrow-linewidth-lasers/cls"/> 66 67 <link rel="alternate" hreflang="x-default" href="https://www.toptica.com/products/narrow-linewidth-lasers/cls"/> 68 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. TOPTICAâs ultra-stable âCLSâ 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.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. TOPTICAâs ultra-stable âCLSâ 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.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. TOPTICAâs ultra-stable âCLSâ 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;
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. TOPTICAâs ultra-stable âCLSâ 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.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" /> 71 </head> 72 73 <body class="min-h-full bg-background text-white product-detail env-prod" data-locale="en" data-site="" data-form-applications-items="[{"label":"Quantum physics science","value":"Quantum physics science"},{"label":"Quantum computing & simulation","value":"Quantum computing & simulation"},{"label":"Quantum sensing & metrology","value":"Quantum sensing & metrology"},{"label":"Quantum communication","value":"Quantum communication"},{"label":"Space","value":"Space"},{"label":"Life science & medical","value":"Life science & medical"},{"label":"Semicon inspection & metrology","value":"Semicon inspection & metrology"},{"label":"Lithography & microfabrication","value":"Lithography & microfabrication"},{"label":"Test & measurement","value":"Test & measurement"},{"label":"Sensing & spectroscopy","value":"Sensing & spectroscopy"}]" data-context-product-id="20"> 74 <div class="animation-container"> 75 <header> 76 <div id="vue-navbar"> 77 <Navbar :menu-items='[{"label":"Lasers","url":"","realFullPath":"\/lasers","isActive":false,"key":"lasers","visualHtml":"<img src=\"\/navigation\/1527\/image-thumb__1527__navigation-visual\/navigation_TOPTICA_lasers-default_2x.5cb6fb6d.png\" alt=\"Lasers\" class=\"w-full h-full object-contain object-top\" \/>","items":[{"label":"Lasers","isHeader":true},{"label":"Single mode lasers (TEM₀₀)","url":"\/lasers\/lasers\/single-mode-lasers","isActive":false,"visualHtml":"<img src=\"\/navigation\/1533\/image-thumb__1533__navigation-visual\/navigation_TOPTICA_single-mode-lasers_2x.3146ed47.png\" alt=\"Single mode lasers (TEM&#8320;&#8320;
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scientific calculator","url":"\/service\/enhance-your-work\/ToptiCalc-scientific_calculator","isActive":false,"visualHtml":"<img src=\"\/navigation\/2855\/image-thumb__2855__navigation-visual\/navigation_TOPTICA_service_topticalc.234b3e8d.png\" alt=\"ToptiCalc - scientific calculator\" class=\"w-full h-full object-contain object-top\" \/>"}]},{"label":"Careers","url":"https:\/\/join.toptica.com\/","realFullPath":"\/Career","isActive":false,"key":"Career","visualHtml":"<div class=\"w-full h-full bg-gray-800 flex items-center justify-center\"><span class=\"text-white\">Careers Image<\/span><\/div>","target":"_blank"}]' :available-translations='{"en":{"language":"en","languageLabel":"English","url":"https:\/\/www.toptica.com\/products\/narrow-linewidth-lasers\/cls","isCurrent":true,"domain":"www.toptica.com","path":"\/products\/narrow-linewidth-lasers\/cls"},"zh":{"language":"zh","languageLabel":"\u4e2d\u6587","url":"https:\/\/www.toptica-china.com\/products\/narrow-linewidth-lasers\/cls","isCurrent":false,"domain":"www.toptica-china.com","path":"\/products\/narrow-linewidth-lasers\/cls"},"ja":{"language":"ja","languageLabel":"\u65e5\u672c\u8a9e","url":"https:\/\/www.toptica.com\/ja\/products\/narrow-linewidth-lasers\/cls","isCurrent":false,"domain":"www.toptica.com","path":"\/ja\/products\/narrow-linewidth-lasers\/cls"}}' current-language='en' find-your-laser-url='/lasers/lasers/all-lasers' contact-form-url='/contact-us' logo-url='https://www.toptica.com' search-url='/search' :is-site-request='false'></Navbar> 78</div> 79 80 </header> 81 82 <main> 83 84 85 86 87 88 89 90 91 92 93 <div data-quicklinks> 94 <sticky-quicklinks :title="'CLS'" :links='[{"label":"Benefits","url":"#benefits","target":""},{"label":"Applications","url":"#applications","target":""},{"label":"Options","url":"#options","target":""},{"label":"Specifications","url":"#specifications","target":""},{"label":"Testimonials","url":"#testimonials","target":""},{"label":"Downloads","url":"#downloads","target":""}]' :breadcrumbs='[{"label":"Home","url":"\/"},{"label":"Narrow linewidth lasers","url":"\/lasers\/lasers\/narrow-linewidth-laser"},{"label":"CLS","url":null}]'></sticky-quicklinks> 95 </div> 96 97 98 99 100 101 102 103 104 105 106 107 108 <div class="hidden lg:block bg-background h-[75vw] md:h-[50vw] lg:h-[c
108alc(100vh-80px)] w-screen bleed-full-width-lg fixed lg:top-[80px] left-0 js-hero-animation z-5"> 109 <div class="absolute left-0 top-0 w-1/2 h-full bg-black opacity-60" style="z-index: 1;"></div> 110 <div class="js-hero-overlay absolute inset-0 bg-primary z-30 pointer-events-none"></div> 111 <div class="js-grey-overlay absolute inset-0 bg-background pointer-events-none" style="z-index: 36;"></div> 112 <div class="lg:absolute inset-0 h-full w-full" style="z-index: 0;"> 113 <div class="w-full h-full"> 114 <div class="w-full h-full relative"> 115 <picture > 116 <source srcset="/_default_upload_bucket/154/image-thumb__154__hero-full/PRELEMINARY%20-%20Optical%20quantum%20clocks.efd90806.webp 1x, /_default_upload_bucket/154/image-thumb__154__hero-full/PRELEMINARY%20-%20Optical%20quantum%[email protected] 2x" width="1920" height="822" type="image/webp" /> 117 <source srcset="/_default_upload_bucket/154/image-thumb__154__hero-full/PRELEMINARY%20-%20Optical%20quantum%20clocks.8e6fae3b.jpg 1x, /_default_upload_bucket/154/image-thumb__154__hero-full/PRELEMINARY%20-%20Optical%20quantum%[email protected] 2x" width="1920" height="822" type="image/jpeg" /> 118 <img class="w-full h-full object-cover object-bottom" src="/_default_upload_bucket/154/image-thumb__154__hero-full/PRELEMINARY%20-%20Optical%20quantum%20clocks.8e6fae3b.jpg" width="1920" height="822" alt="" loading="lazy" srcset="/_default_upload_bucket/154/image-thumb__154__hero-full/PRELEMINARY%20-%20Optical%20quantum%20clocks.8e6fae3b.jpg 1x, /_default_upload_bucket/154/image-thumb__154__hero-full/PRELEMINARY%20-%20Optical%20quantum%[email protected] 2x" /> 119</picture> 120 121 </div> 122 </div> 123 </div> 124 <div class="relative 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 h-full"> 125 <div class="col-span-6 h-full overflow-hidden z-4 flex flex-col justify-center relative lg:pr-50px"> 126 <div class="mb-10"> 127 128 129 130 131 132 133 134<div class="relative flex items-stretch gap-4 overflow-x-clip"> 135 <div class="flex-shrink-0 w-4 md:w-5 bg-primary js-hero-animation-target"></div> 136 137 <div class="flex-1 space-y-4 pt-0 js-hero-animation-headline"> 138 <div class="text-title-sm md:text-title-md lg:text-title-lg font-bold text-white text-trim"> 139 CLS 140 </div> 141 142 <div class="text-subtitle-sm md:text-subtitle-md lg:text-subtitle-lg font-light text-white text-trim mt-4 md:mt-5"> 143 Clock laser system 144 </div> 145 </div> 146</div> 147 148 149 150 151 152 </div> 153 <div> 154 <picture > 155 <source srcset="/lasers/narrow-linewidth-lasers/CLS/412/image-thumb__412__product-head/product_TOPTICA_cls_main.4bb03d3b.webp 1x, /lasers/narrow-linewidth-lasers/CLS/412/image-thumb__412__product-head/[email protected] 2x" width="640" height="281" type="image/webp" /> 156 <source srcset="/lasers/narrow-linewidth-lasers/CLS/412/image-thumb__412__product-head/product_TOPTICA_cls_main.87d7bfe3.png 1x, /lasers/narrow-linewidth-lasers/CLS/412/image-thumb__412__product-head/[email protected] 2x" width="640" height="281" type="image/png" /> 157 <img class="lg:max-h-[45vh] object-contain object-top-left lg:aspect-video" src="/lasers/narrow-linewidth-lasers/CLS/412/image-thumb__412__product-head/product_TOPTICA_cls_main.87d7bfe3.png" width="640" height="281" alt="TOPTICA CLS - Clock laser system 206 to 1770 nm" loading="lazy" srcset="/lasers/narrow-linewidth-lasers/CLS/412/image-thumb__412__product-head/product_TOPTICA_cls_main.87d7bfe3.png 1x, /lasers/narrow-linewidth-lasers/CLS/412/image-thumb__412__product-head/[email protected] 2x" /> 158</picture> 159 160 </div> 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> 163 </div> 164 </div> 165 </div> 166 167 </div> 168 169<div class="lg:hidden"> 170 171 172 173 174 175 176 177 178 <div class="col-span-12"> 179 180 181 182 183 184 185 186 187 188 189 190 191 192 <div class="vue-swiper-slider-image col-span-12 bleed-full-width-tablets"> 193 <swiper-slider :slides="[{"type":"image","src":"<picture class=\"thumbnail-class\">\n\t<source srcset=\"\/_default_upload_bucket\/154\/image-thumb__154__slider-image\/PRELEMINARY%20-%20Optical%20quantum%20clocks~-~media--2247bc1a--query.40cf5049.webp 1x, \/_default_upload_bucket\/154\/image-thumb__154__slider-image\/PRELEMINARY%20-%20Optical%20quantum%[email protected] 2x\" media=\"(min-width: 1024px)\" width=\"635\" height=\"363\" type=\"image\/webp\" \/>\n\t<source srcset=\"\/_default_upload_bucket\/154\/image-thumb__154__slider-image\/PRELEMINARY%20-%20Optical%20quantum%20clocks~-~media--2247bc1a--query.c63d327b.jpg 1x, \/_default_upload_bucket\/154\/image-thumb__154__slider-image\/PRELEMINARY%20-%20Optical%20quantum%[email protected] 2x\" media=\"(min-width: 1024px)\" width=\"635\" height=\"363\" type=\"image\/jpeg\" \/>\n\t<source srcset=\"\/_default_upload_bucket\/154\/image-thumb__154__slider-image\/PRELEMINARY%20-%20Optical%20quantum%20clocks~-~media--ab6a433c--query.4087f253.webp 1
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193]" slider-type="image" slider-direction="ltr" :autoplay-interval="5000"/> 194 </div> 195 </div> 196 197 198 199 200 201</div> 202 203<section class="relative js-hero-section bg-background mt-0 pt-[66px] md:pt-[60px] lg:pt-[80px]"> 204 <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"> 205 <div class="hidden lg:block col-span-6 js-hero-stagger lg:pr-50px"> 206 <div> 207 <picture > 208 <source srcset="/lasers/narrow-linewidth-lasers/CLS/412/image-thumb__412__product-head/product_TOPTICA_cls_main.4bb03d3b.webp 1x, /lasers/narrow-linewidth-lasers/CLS/412/image-thumb__412__product-head/[email protected] 2x" width="640" height="281" type="image/webp" /> 209 <source srcset="/lasers/narrow-linewidth-lasers/CLS/412/image-thumb__412__product-head/product_TOPTICA_cls_main.87d7bfe3.png 1x, /lasers/narrow-linewidth-lasers/CLS/412/image-thumb__412__product-head/[email protected] 2x" width="640" height="281" type="image/png" /> 210 <img class="lg:max-h-[45vh] object-contain object-top-left lg:aspect-video" src="/lasers/narrow-linewidth-lasers/CLS/412/image-thumb__412__product-head/product_TOPTICA_cls_main.87d7bfe3.png" width="640" height="281" alt="TOPTICA CLS - Clock laser system 206 to 1770 nm" loading="lazy" srcset="/lasers/narrow-linewidth-lasers/CLS/412/image-thumb__412__product-head/product_TOPTICA_cls_main.87d7bfe3.png 1x, /lasers/narrow-linewidth-lasers/CLS/412/image-thumb__412__product-head/[email protected] 2x" /> 211</picture> 212 213 </div> 214 </div> 215 <div class="col-span-12 lg:col-span-6"> 216 217 218 219 220 221 222 223<div class="relative flex items-stretch gap-4 overflow-x-clip -ml-8 md:-ml-9 lg:ml-0"> 224 <div class="flex-shrink-0 w-4 md:w-5 bg-primary js-hero-animation-target"></div> 225 226 <div class="flex-1 pt-0 js-hero-animation-headline"> 227 <h1 class="m-0 font-normal"> 228 <span class="block text-title-sm md:text-title-md lg:text-title-lg font-bold text-white text-trim"> 229 CLS 230 </span> 231 232 <span class="block text-subtitle-sm md:text-subtitle-md lg:text-subtitle-lg font-light text-white text-trim mt-4 md:mt-5"> 233 Clock laser system 234 </span> 235 </h1> 236 </div> 237</div> 238 239 240 241 242 243 <div class="mt-12 text-base leading-base prose max-w-none prose-white prose-headings:mb-[50px] prose-headings:mt-0 js-hero-stagger"> 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. TOPTICAâs ultra-stable âCLSâ 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+, Sr+, Ca+, and Ba+ 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> 245 </div> 246 </div> 247 </div> 248</section> 249 250 251 252 253 254 255 256 257 258 259 260 261 262 263 264<div data-animated-button 265 data-start-after="benefits" 266 data-end-in-section-id="additional-information" 267 data-is-sticky-on-end="false" 268 data-mode="product-detail-page" 269 > 270 <div class="grid grid-cols-4 sm:grid-cols-12 container sm:max-w-xl md:max-w-3xl lg:max-w-7xl mx-auto px-8 gap-4 sm:gap-5 md:gap-6"> 271 <div class="col-span-4 sm:col-span-12 flex justify-center"> 272 <div class="relative inline-block w-[min(415px,100%)]"> 273 <button type="button" data-full-height-drawer-open class="cursor-pointer inline-flex items-center justify-center h-[85px] w-[min(415px,100%)] gap-button-gap bg-[#141616] border-2 border-solid border-white px-button-padding text-white font-bold text-button no-underline animated-button-main"> 274 <span 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479x, \/videos\/lasers\/Poster\/1625\/image-thumb__1625__video-poster\/[email protected] 2x\" width=\"375\" height=\"210\" type=\"image\/webp\" \/>\n\t<source srcset=\"\/videos\/lasers\/Poster\/1625\/image-thumb__1625__video-poster\/videoposter_TOPTICA_cls-frog_en.bf5ef0f2.png 1x, \/videos\/lasers\/Poster\/1625\/image-thumb__1625__video-poster\/[email protected] 2x\" width=\"375\" height=\"210\" type=\"image\/png\" \/>\n\t<img class=\"video-thumbnail w-full h-full object-cover object-center\" src=\"\/videos\/lasers\/Poster\/1625\/image-thumb__1625__video-poster\/videoposter_TOPTICA_cls-frog_en.bf5ef0f2.png\" width=\"375\" height=\"210\" alt=\"\" loading=\"lazy\" srcset=\"\/videos\/lasers\/Poster\/1625\/image-thumb__1625__video-poster\/videoposter_TOPTICA_cls-frog_en.bf5ef0f2.png 1x, \/videos\/lasers\/Poster\/1625\/image-thumb__1625__video-poster\/[email protected] 2x\" \/>\n<\/picture>\n","videoControls":"show","videoSubtitles":"show","userLocale":"en"}]" slider-type="video" slider-direction="ltr" :autoplay-interval="5000"></swiper-silder> 480 </div> 481 </div> 482 483 484 485 486 487 </div> 488</section> 489 490 491 492 493 494 495 496 497 498 499 500 501 502 503 504<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"> 506 507 508 509 510 511 512 513 514 515 516 517 <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"> 518 519 Your Benefits 520 </h2> 521 522 523 524 525 526 527 528 529 530 531 532 533 534 535 536 <div class="col-span-12 lg:w-auto lg:col-span-6 bleed-full-width sm:mb-0"> 537 538 539 540 541 542 543 544<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"> 545 546 <div class="flex flex-col pr-6 text-white "> 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) 549 </div> 550 551 <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> 553 </div> 554 </div> 555 556 </div> 557 558 559 560 561 562 </div> 563 <div class="col-span-12 lg:w-auto lg:col-span-6 bleed-full-width sm:mb-0"> 564 565 566 567 568 569 570 571<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"> 572 573 <div class="flex flex-col pr-6 text-white "> 574 <div class="text-key-feature-body-sm lg:text-key-feature-md font-bold text-balance"> 575 Industrial-grade quality and 19â rack integration option 576 </div> 577 578 <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" rack. </div> 580 </div> 581 </div> 582 583 </div> 584 585 586 587 588 589 </div> 590 <div class="col-span-12 lg:w-auto lg:col-span-6 bleed-full-width sm:mb-0"> 591 592 593 594 595 596 597 598<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"> 599 600 <div class="flex flex-col pr-6 text-white "> 601 <div class="text-key-feature-body-sm lg:text-key-feature-md font-bold text-balance"> 602 Long coherence time for high qubit fidelity 603 </div> 604 605 <div class="text-key-feature-body-sm lg:text-key-feature-body-md font-light"> 606 <div>Optical qubit coherence times of >1s have already been demonstrated with the CLS.</div> 607 </div> 608 </div> 609
610 </div> 611 612 613 614 615 616 </div> 617 <div class="col-span-12 lg:w-auto lg:col-span-6 bleed-full-width sm:mb-0"> 618 619 620 621 622 623 624 625<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"> 626 627 <div class="flex flex-col pr-6 text-white "> 628 <div class="text-key-feature-body-sm lg:text-key-feature-md font-bold text-balance"> 629 All wavelengths / dual wavelengths 630 </div> 631 632 <div class="text-key-feature-body-sm lg:text-key-feature-body-md font-light"> 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+, CLS at 871 nm + SHG), 578 nm (neutral Yb, CLS at 1156 + SHG), 674 nm (Sr+), 698 nm (neutral Sr), 729 nm (Ca+), 1550 nm (DFC Core + and Er+) and 1762 nm (Ba+), Even dual-wavelengths are possible, e.g. 840/1013nm.</div> 634 </div> 635 </div> 636 637 </div> 638 639 640 641 642 643 </div> 644 645 646 647 648 649 </div> 650</section> 651 652 653 654 655 656 657 658 659 660 661 662 663 664 665 666<section class="bg-black " id="applications" data-spacing-top="large" data-spacing-bottom="large"> 667 <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"> 668 669 670 671 672 673 674 675 676 677 678 679 <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"> 680 681 Applications 682 </h2> 683 684 685 686 687 688 689 690 691 692 693 694 695 696 697 698 699 700 <div class="col-span-12 md:col-span-6"> 701 702 703 704 705 706 707 708 709 710 <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"> 724 725 726 727 728 729 730 731<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> 755 756 757 758 759 760 </div> 761 </div> 762 763 764 765 766 767 </div> 768 769 770 771 772 <div class="col-span-12 md:col-span-6"> 773 774 775 776 777 778 779 780 781 782 <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"> 796 797 798 799 800 801 802 803<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'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> 827 828 829 830 831 832 </div> 833 </div> 834 835 836 837 838 839 </div> 840 841 842 843 844 <div class="col-span-12 md:col-span-6"> 845 846 847 848 849 850 851 852 853 854 <div class="relative col-span-12 aspect-square md:aspect-[1.452/1] lg:
854aspect-video md:grid md:grid-cols-12 md:gap-6"> 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"> 868 869 870 871 872 873 874 875<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> 899 900 901 902 903 904 </div> 905 </div> 906 907 908 909 910 911 </div> 912 913 914 915 916 <div class="col-span-12 md:col-span-6"> 917 918 919 920 921 922 923 924 925 926 <div class="relative col-span-12 aspect-square md:aspect-[1.452/1] lg:
926aspect-video md:grid md:grid-cols-12 md:gap-6"> 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"> 940 941 942 943 944 945 946 947<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> 971 972 973 974 975 976 </div> 977 </div> 978 979 980 981 982 983 </div> 984 985 986 987 988 <div class="col-span-12 md:col-span-6"> 989 990 991 992 993 994 995 996 997 998 <div class="relative col-span-12 aspect-square md:aspect-[1.452/1] lg:
998aspect-video md:grid md:grid-cols-12 md:gap-6"> 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 & 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 TOPTICAâs laser systems enable cooling and trapping of charged ions â the backbone of todayâs 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> 1358 1359 1360 1361 1362 1363 </div> 1364 1365 1366 <div class="col-span-12 md:col-span-6"> 1367 1368 1369 1370 1371 1372 1373 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> 1395 1396 1397 1398 1399 1400 </div> 1401 1402 1403 <div class="col-span-12 md:col-span-6"> 1404 1405 1406 1407 1408 1409 1410 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" > 1433 <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"> 1434 1435<circle cx="15" cy="15" r="14.5" stroke="currentColor"/> 1436<path d="M9 15L21 15" stroke="currentColor"/> 1437<path d="M15 21L21 15L15 9" stroke="currentColor"/> 1438</svg> 1439 1440 </a> 1441 </div> 1442 </div> 1443 1444 1445 1446 1447 1448 </div> 1449 1450 1451 1452 1453 1454 </div> 1455</section> 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 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 1474 1475 1476 1477 1478 1479 1480 1481 1482 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 1490 1491 1492 1493 1494 1495 1496 1497 1498 1499 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> 1506 1507 1508 1509 1510 1511 1512 1513 1514 1515 1516 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> 1521 </div> 1522 1523 1524 1525 1526 1527 </div> 1528</section> 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538 1539 1540 1541 1542 1543 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"> 1546 1547 1548 1549 1550 1551 1552 1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576 1577 1578 1579 1580 1581 1582 1583 1584 1585 1586 1587 1588 </div> 1589</section> 1590 1591 1592 1593 1594 1595 1596 1597 1598 1599 1600 1601 1602 1603 1604 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"> 1607 1608 1609 1610 1611 1612 1613 1614 1615 1616 1617 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> 1622 1623 1624 1625 1626 1627 1628 1629 1630 1631 1632 1633 1634 1635 1636 1637 1638 <div class="col-span-12 lg:w-auto lg:col-span-12"> 1639 1640 1641 1642 1643 1644 1645 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> 1665 </li> 1666 </ul> 1667 1668 1669</div> 1670 1671 1672 1673 1674 1675 </div> 1676 1677 1678 1679 1680 1681 </div> 1682</section> 1683 1684 1685 1686 1687 1688 1689 1690 1691 1692 1693 1694 1695 1696 1697 1698<section class="bg-black " data-spacing-top="large" data-spacing-bottom="large"> 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"> 1700 1701 1702 1703 1704 1705 1706 1707 1708 1709 1710 1711 <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"> 1712 1713 Literature 1714 </h2> 1715 1716 1717 1718 1719 1720 1721 1722 1723 1724 1725 1726 1727 1728 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 1822<section class="bg-background " data-spacing-top="large" data-spacing-bottom="large"> 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 1840 1841 1842 1843 1844 1845 1846 1847 1848 1849 1850 1851 1852 <div class="col-span-12"> 1853 1854 <div class="vue-swiper-slider-products col-span-12 bleed-full-width"> 1855 <related-products :products="[{"image":"<picture class=\"contents\">\n\t<source srcset=\"\/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\" width=\"240\" height=\"228\" type=\"image\/webp\" \/>\n\t<source srcset=\"\/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\" width=\"240\" height=\"228\" type=\"image\/png\" \/>\n\t<img class=\"w-full h-full object-contain object-center\" src=\"\/lasers\/narrow-linewidth-lasers\/DL-pro\/348\/image-thumb__348__related-products\/product_TOPTICA_dl-pro_main.136144ea.png\" width=\"240\" height=\"228\" alt=\"TOPTICA DL pro - Narrow linewidth, tunable diode laser 369 to 519 nm, 628 to 1770 nm\" loading=\"lazy\" srcset=\"\/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\" \/>\n<\/picture>\n","imageThumbnail":"\/lasers\/narrow-linewidth-lasers\/DL-pro\/348\/image-thumb__348__related-products\/product_TOPTICA_dl-pro_main.136144ea.png","headline":"DL pro","description":"<div>Narrow linewidth, tunable diode laser<\/div>","link":"\/products\/narrow-linewidth-lasers\/dl-pro"},{"image":"<picture class=\"contents\">\n\t<source srcset=\"\/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\" width=\"240\" height=\"172\" type=\"image\/webp\" \/>\n\t<source srcset=\"\/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\" width=\"240\" height=\"172\" type=\"image\/png\" \/>\n\t<img class=\"w-full h-full object-contain object-center\" src=\"\/lasers\/narrow-linewidth-lasers\/TA-pro\/2773\/image-thumb__2773__related-products\/product_TOPTICA_ta-pro_main.accf4c4f.png\" width=\"240\" height=\"172\" alt=\"\" loading=\"lazy\" srcset=\"\/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\" \/>\n<\/picture>\n","imageThumbnail":"\/lasers\/narrow-linewidth-lasers\/TA-pro\/2773\/image-thumb__2773__related-products\/product_TOPTICA_ta-pro_main.accf4c4f.png","headline":"TA pro","description":"<div>Amplified, narrow linewidth diode laser<\/div>","link":"\/products\/narrow-linewidth-lasers\/ta-pro"},{"image":"<picture class=\"contents\">\n\t<source srcset=\"\/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\" width=\"240\" height=\"120\" type=\"image\/webp\" \/>\n\t<source srcset=\"\/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\" width=\"240\" height=\"120\" type=\"image\/png\" \/>\n\t<img class=\"w-full h-full object-contain object-center\" src=\"\/lasers\/narrow-linewidth-lasers\/NLO\/SHG-pro\/443\/image-thumb__443__related-products\/product_TOPTICA_shg-pro_main.6e5307a3.png\" width=\"240\" height=\"120\" alt=\"TOPTICA SHG pro - Frequency doubling cavity 205 nm to 685 nm\" loading=\"lazy\" srcset=\"\/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\" \/>\n<\/picture>\n","imageThumbnail":"\/lasers\/narrow-linewidth-lasers\/NLO\/SHG-pro\/443\/image-thumb__443__related-products\/product_TOPTICA_shg-pro_main.6e5307a3.png","headline":"SHG pro","description":"<div>Frequency doubling cavity<\/div>","link":"\/products\/narrow-linewidth-lasers\/shg-pro"},{"image":"<picture class=\"contents\">\n\t<source srcset=\"\/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\" width=\"240\" height=\"126\" type=\"image\/webp\" \/>\n\t<source srcset=\"\/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\" width=\"240\" height=\"126\" type=\"image\/png\" \/>\n\t<img class=\"w-full h-full object-contain object-center\" src=\"\/lasers\/frequency-combs\/DFC_Core_Plus\/426\/image-thumb__426__related-products\/product_TOPTICA_dfc-core-plus_main.e36f54fe.png\" width=\"240\" height=\"126\" alt=\"TOPTICA DFC - Difference frequency comb 420 to 2200 nm\" loading=\"lazy\" srcset=\"\/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\" \/>\n<\/picture>\n","imageThumbnail":"\/lasers\/frequency-combs\/DFC_Core_Plus\/426\/image-thumb__426__related-products\/product_TOPTICA_dfc-core-plus_main.e36f54fe.png","headline":"DFC","description":"<div>Difference frequency comb<\/div>","link":"\/products\/frequency-combs\/dfc"}
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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? Use the box below to provide an update to your request.","js.form.common.required-field":"This field is required","js.form.common.required-terms-field":"You must accept the terms and conditions","js.form.common.salutation":"Salutation","js.form.common.salutation.defaultOption":"Please select your salutation","js.form.common.salutation.options.mr":"Mr.","js.form.common.salutation.options.mrs":"Mrs.","js.form.common.salutation.options.ms":"Ms.","js.form.common.street":"Street & Street Number","js.form.common.submit":"Submit","js.form.common.submit-error":"Failed to submit form. 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. > 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"}; 2299 </script>
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