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Theoretical Analysis of GaAs-based F-P Cavity Filter and Its Application in Integrated Photodetector

机译:基于GaAs的F-P腔滤光片的理论分析及其在集成光电探测器中的应用

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A kind of GaAs-based F-P(Fabry-Perot) cavity filter was presented. Its structure and tunability were analysed theoretically. Numerical simulation shows transmitted centre wavelength of the filter is 1.55μm, FWHM is 1.8nm and 0.6nm with 17 and 23 pairs of DBR respectively, a red shift of 7.2nm with temperature change of 100K, transmissivity almost keeps unchanged during tuning, and tuning wavelength is linear to temperature change. Further, long-wavelength-absorbed integrated photodetectors based on this filter structure was fabricated. Experimental results show a tuning wavelenghth of 10.2nm with power change of 200mW applied to the device, FWHM of about 0.6nm, and 4% quantum efficiency fluctuation during tuning. Good agreement with the simulation has been achieved.
机译:提出了一种基于GaAs的F-P(Fabry-Perot)空腔滤波器。从理论上分析了其结构和可调性。数值模拟表明,滤光片的透射中心波长为1.55μm,FWHM分别为17和23对DBR,分别为1.8nm和0.6nm,随着100K温度的变化红移为7.2nm,透射率在调谐和调谐期间几乎保持不变波长与温度变化成线性关系。此外,制造了基于该滤光器结构的吸收长波长的集成光电探测器。实验结果表明,在器件上施加200mW的功率变化后,调谐波长为10.2nm,FWHM约为0.6nm,调谐期间量子效率波动为4%。与仿真已达成良好协议。

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