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Theory and experiments of a three-cavity wavelength-selective photodetector

机译:三腔波长选择光电探测器的理论与实验

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摘要

We propose a novel wavelength-selective photodetector with three subcavities, i.e., a filtering cavity, a spacer cavity, and an absorption cavity, for obtaining a narrow spectral response linewidth and a high quantum efficiency simultaneously. A theoretical prediction has been made that a less than 1-nm linewidth and a quantum efficiency as high as 90% are possible. We discuss the effects of the key factors on the performance of this type of photodetector that has been designed and fabricated. A spectral response linewidth of approximately 1.4 nm (FWHM) and an external quantum efficiency higher than 50% have been achieved experimentally. Such devices are promising for wavelength-division multiplexing applications.
机译:我们提出了一种新颖的波长选择光电探测器,该探测器具有三个子腔,即
滤腔,隔离腔和吸收腔,以同时获得窄的光谱响应线宽和高的量子效率。已经做出了理论上的预测,即小于1nm的线宽和高达90%的量子效率是可能的。我们讨论了关键因素对已设计和制造的这种类型的光电探测器性能的影响。通过实验已经实现了大约1.4 nm(FWHM)的光谱响应线宽和高于50%的外部量子效率。这种设备有望用于波分复用应用。

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