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采用电感增益峰值技术的60GHz带宽锗光电探测器。

Germanium photodetector with 60 GHz bandwidth using inductive gain peaking.

作者信息

Novack Ari, Gould Mike, Yang Yisu, Xuan Zhe, Streshinsky Matthew, Liu Yang, Capellini Giovanni, Lim Andy Eu-Jin, Lo Guo-Qiang, Baehr-Jones Tom, Hochberg Michael

出版信息

Opt Express. 2013 Nov 18;21(23):28387-93. doi: 10.1364/OE.21.028387.

Abstract

Germanium-on-silicon photodetectors have been heavily investigated in recent years as a key component of CMOS-compatible integrated photonics platforms. It has previously been shown that detector bandwidths could theoretically be greatly increased with the incorporation of a carefully chosen inductor and capacitor in the photodetector circuit. Here, we show the experimental results of such a circuit that doubles the detector 3dB bandwidth to 60 GHz. These results suggest that gain peaking is a generally applicable tool for increasing detector bandwidth in practical photonics systems without requiring the difficult process of lowering detector capacitance.

摘要

近年来,硅基锗光电探测器作为CMOS兼容集成光子学平台的关键组件受到了广泛研究。此前已经表明,通过在光电探测器电路中加入精心选择的电感和电容,理论上可以大幅提高探测器带宽。在此,我们展示了这样一个电路的实验结果,该电路将探测器的3dB带宽翻倍至60GHz。这些结果表明,增益峰值是一种普遍适用的工具,可用于在实际光子学系统中增加探测器带宽,而无需进行降低探测器电容这一困难的工艺。

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