WDM光学系统中基于微谐振腔波导的光电探测器

G. Abaeiani, V. Ahmadi, K. Saghafi
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引用次数: 7

摘要

提出了微环波导光电探测器的带宽和带宽效率积(BEP)分析模型。除了载流子输运和充电过程外,光子寿命效应也包括在带宽模型中。这种效应的特征是微环谐振器的ODB。结果表明,短腔和部分过耦合结构适合于超高速光探测。同时,光子寿命可以设置为获得太赫兹选择性光电探测器。介绍了一种新型的兼容CMOS的硅MRWPD,并对其高速性能进行了研究。结果表明,该光电探测器即使在极低吸收和低体积(约2mum3)活性区的情况下,也能提供几十千兆赫数量级的BEP。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microring-Based Resonant Cavity Waveguide Photodetectors for WDM Optical Systems
Analytical models for bandwidth and bandwidth-efficiency product (BEP) of microring waveguide photodetectors (MRWPDs) are presented. In addition to carrier transport and charging processes, the photon lifetime effect is included in the bandwidth model. This effect is characterized by the ODB of microring resonators. It is shown that the short cavities and partially overcoupled structures are suitable for very high speed photodetection. Meanwhile, photon lifetime can be set to obtain terahertz selective photodetectors. Also, a novel CMOS compatible silicon MRWPD is introduced and its high speed performance is investigated. It is shown this photodetector can provide BEP in order of several tens gigahertz even with very low absorption and low volume (about 2 mum3) active regions.
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