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dc.date.accessioned2017-05-12T14:28:00Z
dc.date.available2017-05-12T14:28:00Z
dc.date.issued10/19/2004
dc.identifier.urihttp://hdl.handle.net/1853/57545
dc.description.abstractWaveguides having air-gap cladding layers and methods of fabricating waveguides having air-gap cladding layers are disclosed. A representative waveguide includes a waveguide core having an air-gap cladding layer engaging a portion of the waveguide core. In addition, a representative method of fabricating a waveguide having an air-gap cladding layer includes: providing a substrate having a lower cladding layer disposed on the substrate; disposing a waveguide core on a portion of the lower cladding layer; disposing a sacrificial layer onto at least one portion of the lower cladding layer and the waveguide core; disposing an overcoat layer onto the lower cladding layer and the sacrificial layer; and removing the sacrificial layer to define an air-gap cladding layer within the overcoat polymer layer and engaging a portion of the waveguide core.
dc.titleOptical Waveguides With Embedded Air-gap Cladding Layer And Methods Of Fabrication Thereof
dc.typeText
dc.type.genrePatent
dc.contributor.patentcreatorMule', Tony
dc.contributor.patentcreatorMeindl, James D.
dc.contributor.patentcreatorGaylord, Thomas K.
dc.contributor.patentcreatorGlytsis, Elias N.
dc.contributor.patentcreatorKohl, Paul
dc.identifier.patentnumber6807352
dc.description.assigneeGeorgia Tech Research Corporation
dc.identifier.patentapplicationnumber10/074067
dc.date.filed2/11/2002
dc.identifier.uspc385/131
dc.identifier.cpcG02B6/10
dc.identifier.cpcG02B6/1221
dc.identifier.cpcG02B6/132


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