"use strict";(self.webpackChunkquarkly_export=self.webpackChunkquarkly_export||[]).push([[344],{5313:function(e,t,i){i.r(t);var a=i(3696),n=i(4929),o=i(2997),l=i(605),r=i(7785),p=i(6965),s=i(7338),d=i(6938),c=i(3043),x=i(5033),m=i(267),g=i(4129),h=i(2103);t.default=()=>a.createElement(o.Ay,{theme:n.A},a.createElement(x.c,{pageUrl:"wollaston-nomarski-prisms"}),a.createElement(c.m,null,a.createElement("title",null,"SPhotonix Wollaston Nomarski Prisms: Monolithic Precision for Polarization Optics"),a.createElement("meta",{name:"description",content:"Explore SPhotonix’s advanced Wollaston prisms, laser-written in monolithic fused silica using femtosecond technology. Ideal for DIC microscopes, ellipsometers, and interferometers with customizable shear angles and excellent polarization separation."}),a.createElement("meta",{property:"og:title",content:"SPhotonix Wollaston Nomarski Prisms: Monolithic Precision for Polarization Optics"}),a.createElement("meta",{property:"og:description",content:"Explore SPhotonix’s advanced Wollaston prisms, laser-written in monolithic fused silica using femtosecond technology. Ideal for DIC microscopes, ellipsometers, and interferometers with customizable shear angles and excellent polarization separation."}),a.createElement("meta",{property:"og:image",content:"https://uploads.quarkly.io/66b79a6ce778710018d27b85/images/sphotonix-new-logo-white.svg?v=2024-09-17T17:56:51.435Z"}),a.createElement("link",{rel:"shortcut icon",href:"https://uploads.quarkly.io/66b79a6ce778710018d27b85/images/SPhotonix-fav32w.png?v=2024-09-23T14:28:13.820Z",type:"image/x-icon"}),a.createElement("link",{rel:"apple-touch-icon",href:"https://uploads.quarkly.io/66b79a6ce778710018d27b85/images/SPhotonix-fav152w.png?v=2024-09-23T14:28:06.690Z"}),a.createElement("link",{rel:"apple-touch-icon",sizes:"76x76",href:"https://uploads.quarkly.io/66b79a6ce778710018d27b85/images/SPhotonix-fav152w.png?v=2024-09-23T14:28:06.690Z"}),a.createElement("link",{rel:"apple-touch-icon",sizes:"152x152",href:"https://uploads.quarkly.io/66b79a6ce778710018d27b85/images/SPhotonix-fav152w.png?v=2024-09-23T14:28:06.690Z"}),a.createElement("link",{rel:"apple-touch-startup-image",href:"https://uploads.quarkly.io/66b79a6ce778710018d27b85/images/SPhotonix-fav152w.png?v=2024-09-23T14:28:06.690Z"}),a.createElement("meta",{name:"msapplication-TileImage",content:"https://uploads.quarkly.io/66b79a6ce778710018d27b85/images/SPhotonix-fav270w.png?v=2024-09-23T14:27:58.132Z"}),a.createElement("meta",{name:"msapplication-TileColor",content:"#ffffff"})),a.createElement(h.Y9,null,a.createElement(m.A,{slot:"linkBox19",color:"--accentOrange"})),a.createElement(l.A,{height:"88px","sm-height":"52px"}),a.createElement(l.A,{width:"100%",height:"auto","padding-top":"120px","padding-bottom":"64px","padding-left":"190px","padding-right":"190px",background:"#EEEEEE","flex-direction":"column","justify-content":"flex-start","align-items":"flex-start","grid-gap":"40px",display:"inline-flex",padding:"90px 16px 64px 16px","sm-padding":"60px 16px 24px 16px"}," ",a.createElement(l.A,{"align-self":"stretch",height:"auto","flex-direction":"column","justify-content":"flex-start","align-items":"center","grid-gap":"16px",display:"flex"}," ",a.createElement(r.Ay,{"align-self":"stretch","text-align":"center",color:"#080808",font:"600 72px/82px Epilogue","word-wrap":"break-word",margin:"0px 0px 0px 0px","sm-font":"600 32px/30px Epilogue","sm-text-align":"center"},"Wollaston/Nomarski prisms")," ")),a.createElement(l.A,{width:"100%",background:"linear-gradient(0deg, #EEEEEE 0%, #EEEEEE 100%)","flex-direction":"column","justify-content":"flex-start","align-items":"flex-start","grid-gap":"40px",display:"inline-flex","md-padding":"60px 16px 24px 16px",height:"auto",padding:"60px 16px 120px 16px"}," ",a.createElement(l.A,{"align-self":"stretch",height:"auto","flex-direction":"column","justify-content":"flex-start","align-items":"center","grid-gap":"16px",display:"flex","flex-wrap":"no-wrap",margin:"0px auto 0px auto","max-width":"1348px",width:"100%"}," ",a.createElement(r.Ay,{"text-align":"left",color:"#212121",font:"400 21px Epilogue","line-height":"32px","word-wrap":"break-word","max-width":"840px",margin:"0px 0px 0px 0px",width:"100%"},"Wollaston prisms are key components for various optical systems such as differential interference contrast (DIC) microscopes, ellipsometers and interferometers. The conventional Wollaston prism consists of two calcite wedges with orthogonal optical axes cemented together (see Fig. 4, left side). The prism splits the incident light beam into two orthogonally polarized beams with a certain shear angle. We propose to use SPhotonix unique femtosecond laser writing technology to fabricate Wollaston prisms in a monolithic fused silica glass. The shear angle can be determined by the retardance gradient across the beam (vertical to the beam propagation direction) created by a birefringent layer with a gradually changing thickness inside the glass (see retardance profile in Fig. 5). This approach allows us to separate two orthogonal polarizations (Fig. 4 right side) and to fabricate efficient Wollaston prisms with a wide range of shear angles, including those required for various optical devices such as DIC microscopes, polarization analyzers and spectrometers. Our prisms have been tested in DIC microscopes showing an excellent performance (Fig. 6)."),a.createElement(h.sH,{src:"https://uploads.quarkly.io/66b79a6ce778710018d27b85/images/Wollaston-Nomarski-prisms-image1.png?v=2025-06-06T15:45:43.292Z",padding:"0px 0px 0px 0px","max-width":"1020px"},a.createElement(m.A,{slot:"Text",font:"400 21px/140% Epilogue"},"Fig. 4 Schematic description of operation of the conventional (left) and SPhotonix (right) Wollaston"),a.createElement(m.A,{slot:"Authorship",display:"none"})),a.createElement(h.sH,{src:"https://uploads.quarkly.io/66b79a6ce778710018d27b85/images/Wollaston-Nomarski-prisms-image2.png?v=2025-06-06T15:45:43.278Z",padding:"0px 0px 0px 0px","max-width":"800px"},a.createElement(m.A,{slot:"Text",font:"400 21px/140% Epilogue"},"Fig. 5 Retardance profile in birefringent layer of SPhotonix Wollaston prisms [2]."),a.createElement(m.A,{slot:"Authorship",display:"none"})),a.createElement(h.sH,{src:"https://uploads.quarkly.io/66b79a6ce778710018d27b85/images/Wollaston-Nomarski-prisms-image3.png?v=2025-06-06T15:45:43.322Z",padding:"0px 0px 0px 0px","max-width":"1020px"},a.createElement(m.A,{slot:"Text",font:"400 21px/140% Epilogue"},"Fig. 6 Images obtained by DIC microscopy using conventional (left) and SPhotonix Wollaston prism (right) [2]."),a.createElement(m.A,{slot:"Authorship",display:"none"})),a.createElement(h.sH,{src:"https://uploads.quarkly.io/66b79a6ce778710018d27b85/images/Wollaston-Nomarski-prisms-image4.png?v=2025-06-06T15:50:04.346Z",padding:"0px 0px 0px 0px","max-width":"1020px"},a.createElement(m.A,{slot:"Text",font:"400 21px/140% Epilogue"},"Fig. 7 SPhotonix Wollaston prisms."),a.createElement(m.A,{slot:"Authorship",display:"none"}))," ")),a.createElement(l.A,{height:"1px",background:"#B1B1B1","align-items":"center","flex-direction":"column","justify-content":"center","flex-wrap":"no-wrap",margin:"0px 190px 0px 190px","sm-margin":"0px 16px 0px 16px"}),a.createElement(l.A,{width:"100%","flex-direction":"column","justify-content":"flex-start","align-items":"flex-start","grid-gap":"140px",display:"inline-flex","md-display":"flex","md-padding":"56px 16px 24px 16px","md-height":"min-content","md-grid-row-gap":"64px",padding:"100px 16px 24px 16px",background:"white"}," ",a.createElement(l.A,{"align-self":"stretch","justify-content":"flex-start","align-items":"flex-start","grid-gap":"80px",display:"inline-flex","md-display":"flex","md-flex-direction":"column","md-flex-wrap":"no-wrap","md-align-items":"center","md-justify-content":"center","md-grid-row-gap":"24px","max-width":"1348px",margin:"0px auto 0px auto",width:"100%"}," ",a.createElement(l.A,{flex:"1 1 0","flex-direction":"column","justify-content":"flex-start","align-items":"flex-start","grid-gap":"28px",display:"inline-flex","md-width":"100%","md-padding":"0px 0px 0px 0px","md-height":"fit-content","md-align-items":"center","md-display":"flex","md-flex-direction":"column","md-justify-content":"center","md-flex-wrap":"no-wrap","md-grid-column-gap":"0px","md-grid-row-gap":"8px","md-max-width":"460px"}," ",a.createElement(l.A,{"align-self":"stretch","flex-direction":"column","justify-content":"flex-start","align-items":"flex-start","grid-gap":"24px",display:"flex"}," ",a.createElement(r.Ay,{color:"#080808",font:"600 72px Epilogue","line-height":"76px","word-wrap":"break-word",margin:"0px","md-font":"600 28px/32px Epilogue","md-width":"100%","text-fill-color":"transparent",style:{"-webkit-text-fill-color":"transparent"},background:"linear-gradient(96.04deg, #080808 -0.01%, #FC0D1D 42.34%)","background-clip":"text","max-width":"100%",width:"350px"},"Get in touch...")," ")," ",a.createElement(r.Ay,{"align-self":"stretch",opacity:.8,color:"#080808",font:"400 21px Epilogue","line-height":"32px","word-wrap":"break-word",margin:"0px 0px 0px 0px","md-width":"100%","md-font":"400 17px/26px Epilogue"},a.createElement(p.O,null,a.createElement(s.A,{href:"mailto:info@sphotonix.com?Web Enquiry: "},"info@sphotonix.com")))," ")," ",a.createElement(h.x8,{"md-width":"100%","max-width":"460px","sm-max-width":"100%",action:"https://hook.us2.make.com/hjnb5ehyjg5y8r34k2rof21sytprjns2",method:"post"},a.createElement(m.A,{slot:"Form","flex-direction":"column","justify-content":"flex-start","align-items":"flex-start","grid-gap":"16px",display:"inline-flex"}),a.createElement(m.A,{slot:"Content",display:"flex","flex-direction":"column","flex-wrap":"no-wrap","grid-row-gap":"16px"}),a.createElement(m.A,{slot:"Error Text"}),a.createElement(m.A,{slot:"Success Text",font:"--bodyText17Regular"})," ",a.createElement(r.Ay,{"align-self":"stretch",color:"#212121",font:"400 17px Epilogue","line-height":"26px","word-wrap":"break-word",margin:"0px 0px 0px 0px","md-font":"400 17px/26px Epilogue"},"Stay ahead with the latest breakthroughs in optical nanotechnology! 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