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Design and Analysis of an Afterpulsing Auto-Correction System for Single Photon Avalanche Diodes

机译:单光子雪崩二极管后脉冲自动校正系统的设计与分析

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In this work, an auto-afterpulsing correction system for single photon avalanche photodiode (SPAD) is proposed and implemented which can be used in real-time to minimize the afterpulsing effect in SPAD. The system is based on passive quenching circuit and retriggerable monostable multivibrator and can be used for any SPADs with different bias voltages (Vb). Two different SPADs are used to evaluate the proposed system, one is a planar SPAD fabricated in-house (Vb is around 26V) and the other one is a commercial reach-through SPAD (Vb is around 126V). Experimental results show that for both SPADs, the afterpulsing probabilities can be effectively reduced to below 0.5% from 5% and 4% respectively. Results also show that, with a proper time interval threshold, the SPAD's afterpulsing probability can be maintained below 0.5% with the increasing of the bias voltage. The system developed is simple and can be used for effectively minimizing the afterpulsing effect for any SPADs that makes it very useful in low cost and compact SPAD based photon counting applications.
机译:在这项工作中,提出并实施了用于单光子雪崩光电二极管(SPAD)的自动后脉冲校正系统,其可以实时使用,以最小化SPAD中的后脉冲效果。该系统基于被动淬火电路和可触转的单稳态多谐振荡器,并且可以用于具有不同偏置电压(VB)的任何侧面。两种不同的壳体用于评估所提出的系统,一个是内部制造的平面垫(VB为约26V),另一个是商业覆盖范围(VB约为126V)。实验结果表明,对于两种剥片,后脉冲概率可有效地降低至分别为5%和4%的0.5%。结果还表明,随着适当的时间间隔阈值,随着偏置电压的增加,将SPAD的后脉冲概率保持在0.5%以下。开发的系统很简单,可用于有效地最小化任何使其在低成本和基于紧凑的光子计数应用中非常有用的任何侧面的后脉冲效果。

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