SiPM的电压模式与电流模式读数的时间性能

F. Ciciriello, F. Corsi, F. Licciulli, C. Marzocca, G. Matarrese
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引用次数: 5

摘要

当在单光子探测应用中需要时序精度方面的相关性能时,比较不同结构的SiPM探测器前端前置放大器是有用的。过去已经提出了许多不同的解决方案,可分为三种主要方法:电荷敏感放大器,电压模式放大器和电流模式缓冲器。这里讨论了这些体系结构,并强调了它们的局限性和优点。考虑了探测器的简化模型和时间抖动的经典表达式,进行了比较。分析了与SiPM和前端电子器件互连相关的寄生效应的影响,并考虑了不同前端风格对可实现时序性能的相应限制,以找出更合适的方法。为了支持分析,在相同条件下对比较架构的简单电路实现进行了仿真。研究结果表明,由于带宽限制,电荷敏感放大器配置效率低下,而电流模式方法可以获得最佳的时序精度性能,特别是当互连寄生相关时。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Time performance of voltage-mode vs current-mode readouts for SiPM's
A comparison among different architectures of front-end preamplifiers for SiPM detectors is useful when relevant performance in terms of timing accuracy is required in single photon detection applications. Many different solutions have been proposed in the past, which can be grouped into three main approaches: charge sensitive amplifiers, voltage-mode amplifiers and current-mode buffers. Here these architectures have been discussed and their limitations and advantages have been highlighted. The comparison has been carried out considering a simplified model of the detector and the classical expression of the time jitter. The influence of parasitic effects associated to the interconnections between the SiPM and the front-end electronics has also been analyzed and the corresponding limitations to the achievable timing performance of the different front-end styles have been considered, in order to find out more about the most suitable approach. To support the analysis, simulations of simple circuit implementations of the compared architectures have been carried out, under equal conditions. The results of the study show that the charge sensitive amplifier configuration results to be inefficient, due to bandwidth limitations, and that the best timing accuracy performance can be achieved by a current-mode approach, especially when the interconnection parasitics become relevant.
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