Advanced Functional Materials · 2003 · 29 citations · 16 references
Ultra‐low‐loss Acrylate PolymersWaveguidesOptical MaterialsMaterials SystemEngineeringOptical GlassResponsive PolymersPolymersPolymer TechnologyOptical PropertiesPolymer ProcessingGuided-wave OpticPhotopolymer NetworkPolymer ChemistryPlanar Waveguide SensorMaterials ScienceAcrylate MonomersPhotonic MaterialsPolymer ScienceApplied PhysicsOptical WaveguidesGlass PhotonicsLow Absorption LossesOptoelectronics
Abstract We have developed a materials system composed of liquid multifunctional fluorinated acrylate monomers that achieves very low absorption losses within both datacom and telecom wavelength ranges. Identified structure–property relationships have guided the design of polymers that are optimized with respect to their inherent materials properties and their ability to be processed into low‐loss optical waveguides. Together these co‐developed materials and processes combine to produce waveguides that have propagation losses equivalent to planar glass guides, and significantly reduced polarization dependence and improved thermal response needed for the performance of thermo‐optic devices. Extensive environmental studies have demonstrated robustness well beyond that required for normal operating conditions.
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Polymer-Based Optical Waveguides: Materials, Processing, and Devices
Hui Ma, Alex K.‐Y. Jen, L. R. Dalton · Advanced Materials · 2002 · 1.2K citations
Perfluorocyclobutyl Copolymers for Microphotonics
D.W. Smith, Shuo Chen, S. Madan Kumar et al. · Advanced Materials · 2002 · 143 citations
Advances in telecom and datacom optical components
Louay A. Eldada · Optical Engineering · 2001 · 141 citations