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Single-Photon Detection at Telecom Wavelengths
引用本文:孙志斌 马海强 雷鸣 王迪 刘赵杰 杨捍东 吴令安 翟光杰 冯稷. Single-Photon Detection at Telecom Wavelengths[J]. 中国物理快报, 2007, 24(2): 574-576
作者姓名:孙志斌 马海强 雷鸣 王迪 刘赵杰 杨捍东 吴令安 翟光杰 冯稷
作者单位:Institute of Physics, Chinese Academy of Sciences, Beijing 100080
基金项目:Supported by the State Key Basic Research Programme of China Grant No 2001CB309301, and the National Natural Science Foundation of China under Grant No 60578029.
摘    要:A single-photon detector based on an InGaAs avalanche photodiode has been developed for use at telecom wavelengths. A suitable delay and sampling gate modulation circuit are used to prevent positive and negative transient pulses from influencing the detection of true photon induced avalanches. A monostable trigger circuit eliminates the influence of avalanche peak jitter, and a dead time modulation feedback control circuit decreases the afterpulsing. From performance tests we lind that at the optimum operation point, the quantum efficiency is 12% and the dark count rate 1.5 × 10^-6 ns^-1, with a detection rate of 500 kHz.

关 键 词:光子检测 光电二极管 波长 调制技术
收稿时间:2006-09-18
修稿时间:2006-09-18

Single-Photon Detection at Telecom Wavelengths
SUN Zhi-Bin,MA Hai-Qiang,LEI Ming,WANG Di,LIU Zhao-Jie,YANG Han-Dong,WU Ling-An,ZHAI Guang-Jie,FENG Ji. Single-Photon Detection at Telecom Wavelengths[J]. Chinese Physics Letters, 2007, 24(2): 574-576
Authors:SUN Zhi-Bin  MA Hai-Qiang  LEI Ming  WANG Di  LIU Zhao-Jie  YANG Han-Dong  WU Ling-An  ZHAI Guang-Jie  FENG Ji
Affiliation:Institute of Physics, Chinese Academy of Sciences, Beijing 100080
Abstract:A single-photon detector based on an InGaAs avalanche photodiode has been developed for use at telecom wavelengths. A suitable delay and sampling gate modulation circuit are used to prevent positive and negative transient pulses from influencing the detection of true photon induced avalanches. A monostable trigger circuit eliminates the influence of avalanche peak jitter, and a dead time modulation feedback control circuit decreases the afterpulsing. From performance tests we find that at the optimum operation point, the quantum efficiency is 12% and the dark count rate 1.5×10-6ns-1, with a detection rate of 500kHz.
Keywords:85.60.Dw  85.60.Gz  03.67.Dd
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