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Athermal performance in high-Q polymer-clad silicon microdisk resonators
Authors:Alipour Payam  Hosseini Ehsan Shah  Eftekhar Ali Asghar  Momeni Babak  Adibi Ali
Affiliation:School of Electrical and Computer Engineering, Georgia Institute of Technology, Atlanta, Georgia 30332, USA.
Abstract:We present a method for eliminating the temperature dependence of the resonance wavelength in high-Q silicon-based microdisk resonators by using a polymer cladding with a negative thermo-optic coefficient. Design requirements for athermal performance are derived based on theory and simulation, and their validity is experimentally verified.
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