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作 者:龙耀强 单晓 武文 梁焰[1] Long Yaoqiang;Shan Xiao;Wu Wen;Liang Yan(School of Optical-Electrical and Computer Engineering,University of Shanghai for Science and Technology,Shanghai 200093,China)
机构地区:[1]上海理工大学光电信息与计算机工程学院,上海200093
出 处:《红外与激光工程》2023年第3期64-71,共8页Infrared and Laser Engineering
基 金:国家重点研发计划(2021YFB2801100);国家自然科学基金(62175152,61927813)。
摘 要:InGaAs/InP雪崩光电二极管(APD)体积小、功耗低、响应速度快,被广泛应用于近红外单光子检测。文中分析了APD雪崩及噪声信号的频谱分布特征,提出了正弦门控结合低通滤波级联方案,噪声抑制比超过40 dB,实现了1~2 GHz高性能探测。当工作速率为1.5 GHz,探测效率设置为20.0%时,后脉冲概率为6.6%,暗计数率仅为6.7×10^(-7)/gate。此外,集成了APD高速门控产生及延时调节模块,温度反馈稳定控制模块,实现了单光子探测器12 h稳定运行,计数标准差仅为1.0%。最后,为了更完整的描述探测器的量子特征,引入量子探测器层析技术进行标定,重新构建了其正值算符测度矩阵以及对应的Wigner函数,为其在量子通信、量子计算等量子信息技术的应用中提供支撑。Objective With the development of quantum information science,laser radar and deep space detection,the traditional linear photoelectric detection technology has been unable to meet the needs of sensitive optical signal detection.The single-photon detection technology has gradually become an important research in the fields of weak light detection.InGaAs/InP avalanche photodiodes(APDs)are widely used in near-infrared single-photon detection due to the small size,low power consumption and fast response.The detection rate of most commercial InGaAs/InP detectors is at the level of 100 MHz,which cannot meet the application requirements for high counting rate.Meanwhile,low noise of the APD will bring smaller false counts to the system and further improve the performance.Therefore,a low-noise InGaAs/InP single-photon detector operating at the repetition frequency of GHz was demonstrated.Furthermore,the whole detector is evaluated with the quantum detector tomography technology,providing support for its application in quantum information technology such as quantum communication and quantum computation.Methods In order to determine the detection frequency of gating signals,the response bandwidth of the APD is analyzed in the linear mode,and the bandwidth range is calculated to be 1-2 GHz.The spectral distribution characteristics of APD avalanche and noise signals are analyzed in the Geiger mode.It could be figured out that the noise is mainly distributed in the gating frequency and its harmonic frequencies,while the avalanche signal is mainly distributed below 1 GHz.Therefore,a cascade scheme of sine wave gating combined with low-pass filtering is proposed(Fig.3).The detector comprises high-speed gate generation and delay regulation module,temperature feedback control module,etc.Sine wave gating could be precisely controlled from many parameters which include frequency,amplitude,delay in a wide range.Feedback is added in the temperature control module to improve the stability of the detector.In addition,quantum detector t
关 键 词:单光子探测器 雪崩光电二极管 低通滤波 量子层析
分 类 号:TN247[电子电信—物理电子学]
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