Author:
Yi Linkai,Liu Daoqun,Cheng Wenzheng,Li Daimo,Zhou Guoqi,Zhang Peng,Tang Bo,Li Bin,Wang Wenwu,Yang Yan,Li Zhihua
Abstract
Abstract
Avalanche photodetectors (APDs) featuring an avalanche multiplication region are vital for reaching high sensitivity and responsivity in optical transceivers. Waveguide-coupled Ge-on-Si separate absorption, charge, and multiplication (SACM) APDs are popular due to their straightforward fabrication process, low optical propagation loss, and high detection sensitivity in optical communications. This paper introduces a lateral SACM Ge-on-Si APD on a silicon-on-insulator (SOI) wafer, featuring a 10 μm-long, 0.5 μm-wide Ge layer at 1310 nm on a standard 8-inch silicon photonics platform. The dark current measures approximately 38.6 μA at −21 V, indicating a breakdown voltage greater than −21 V for the device. The APDs exhibit a unit-gain responsivity of 0.5 A/W at −10 V. At −15 V, their responsivity reaches 2.98 and 2.91 A/W with input powers of −10 and −25 dBm, respectively. The device's 3-dB bandwidth is 15 GHz with an input power of −15 dBm and a gain is 11.68. Experimental results show a peak in impedance at high bias voltages, attributed to inductor and capacitor (LC) circuit resonance, enhancing frequency response. Furthermore, 20 Gbps eye diagrams at −21 V and −9 dBm input power reveal signal to noise ratio (SNRs) of 5.30. This lateral SACM APD, compatible with the stand complementary metal oxide semiconductor (CMOS) process, shows that utilizing the peaking effect at low optical power increases bandwidth.
Reference53 articles.
1. High-speed Si-Ge avalanche photodiodes;Wang;PhotoniX,2022
2. Study on the near-infrared COMS compatible avalanche photodetector;Liu;PhD Dissertation, University of Chinese Academy of Sciences,2022
3. Past, present, and future of InP-based photonic integration;Smit;APL Photonics,2019
4. Ultra-fast germanium photodiode with 3-dB bandwidth of 265 GHz;Lischke;Nat Photon,2021
5. 2×2 SOI optical switch with robust high extinction ratio on all paths enabled by parabolic MMI coupler;Wu;2023 Asia Communications and Photonics Conference/2023 International Photonics and Optoelectronics Meetings (ACP/POEM),2023