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基于梯形吸收体的高速高功率锗光电探测器。

High-speed and high-power germanium photodetector based on a trapezoidal absorber.

作者信息

Zhu Yupeng, Liu Zhi, Niu Chaoqun, Pang Yaqing, Zhang Diandian, Liu Xiangquan, Zheng Jun, Zuo Yuhua, Xue Haiyun, Cheng Buwen

出版信息

Opt Lett. 2022 Jul 1;47(13):3263-3266. doi: 10.1364/OL.461673.

Abstract

A compact high-power germanium photodetector (Ge PD) is experimentally demonstrated by re-engineering light distribution in the absorber. Compared with a conventional Ge PD, the proposed structure shows a DC saturation photocurrent improved by 28.9% and 3 dB bandwidth as high as 49.5 GHz at 0.1 mA. Under the same photocurrent of 10.5 mA, the proposed Ge PD shows a 3 dB bandwidth of 11.1 GHz, which is almost double the conventional Ge PD (5.6 GHz). The 25 Gb/s eye-diagram measurement verifies the improved power handling capability. The compact size and manufacturing simplicity of this structure will enable new applications for integrated silicon photonics.

摘要

通过对吸收体中的光分布进行重新设计,实验展示了一种紧凑型高功率锗光电探测器(Ge PD)。与传统的Ge PD相比,所提出的结构显示出直流饱和光电流提高了28.9%,在0.1 mA时3 dB带宽高达49.5 GHz。在相同的10.5 mA光电流下,所提出的Ge PD显示出11.1 GHz的3 dB带宽,几乎是传统Ge PD(5.6 GHz)的两倍。25 Gb/s眼图测量验证了改进的功率处理能力。这种结构的紧凑尺寸和制造简易性将为集成硅光子学带来新的应用。

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