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Impact of polymerintegrated optics on silicon wafer area networks Invited Paper
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absorption achieved alignment angle applied axis beam calculated Chem coefficient complexes compounds conjugated crystal cyanine dependence deposition derivatives described determined devices dipole direction effect efficient electric field electro-optic electronic energy enhancement excited experimental experiments fabricated field Figure frequency function glass increased indices induced integrated intensity larger laser layer length light linear materials measured method mode modulation molecular molecules NLO activity nonlinear optical Nonlinear Optical Properties observed obtained optical nonlinearity organic oriented performed phase Phys polar poling polymer polymeric prepared present pulse pump range REFERENCES reflection refractive index relatively response sample second harmonic shown in Figure shows side signal single solution space group spectra stability structure substituted substrate switching synthesized Table technique temperature theoretical thickness thin films third transition transmission unit values waveguide wavelength