Compact InGaAs/InP single-photon detector module with ultra-narrowband interference circuits

Zhengyu Yan, Tingting Shi, Yuanbin Fan, Lai Zhou, Zhiliang Yuan
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Abstract

Gated InGaAs/InP avalanche photodiodes are the most practical device for detection of telecom single photons arriving at regular intervals. Here, we report the development of a compact single-photon detector (SPD) module measured just 8.8 × 6 × 2 cm 3 in size and fully integrated with driving signal generation, faint avalanche readout, and discrimination circuits as well as temperature regulation and compensation. The readout circuit employs our previously reported ultra-narrowband interference circuits (UNICs) to eliminate the capacitive response to the gating signal. We characterize a UNIC-SPD module with a 1.25-GHz clock input and find its performance comparable to its counterpart built upon discrete functional blocks. Setting its detection efficiency to 30% for 1,550-nm photons, we obtain an afterpulsing probability of 2.4% and a dark count probability of 8 × 10 −7 per gate under 3-ns hold-off time. We believe that UNIC-SPDs will be useful in important applications such as quantum key distribution.
紧凑的InGaAs/InP单光子探测器模块,具有超窄带干扰电路
门控InGaAs/InP雪崩光电二极管是检测定期到达的电信单光子最实用的装置。在这里,我们报告了一种紧凑的单光子探测器(SPD)模块的开发,其尺寸仅为8.8 × 6 × 2 cm 3,并完全集成了驱动信号产生,微弱雪崩读出和识别电路以及温度调节和补偿。读出电路采用我们之前报道的超窄带干扰电路(unic)来消除对门控信号的电容响应。我们对具有1.25 ghz时钟输入的uni - spd模块进行了表征,并发现其性能可与基于离散功能块的对应模块相媲美。将1550 nm光子的检测效率设置为30%,在3-ns延迟时间下,我们获得了2.4%的后脉冲概率和每个栅极8 × 10−7的暗计数概率。我们相信,uc - spd将在量子密钥分发等重要应用中发挥重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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