猝灭电路鉴别器结构对低于10ps FWHM单光子时序分辨率SPAD的影响

Q3 Physics and Astronomy
F. Nolet, V. Gauthier, S. Parent, F. Vachon, N. Roy, Nicolas St-Jean, S. Charlebois, J. Pratte
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引用次数: 0

摘要

在辐射仪器领域,人们希望达到低于10ps的FWHM定时分辨率,用于诸如飞行时间正电子发射断层扫描、飞行时间正电子计算机断层扫描和时间分辨量热法的应用。这些应用的检测链的关键部分之一是单光子探测器,近年来,提出了第一个具有低于10ps时序分辨率的单光子雪崩二极管(SPAD)。为了达到这样的定时分辨率,SPAD由作为比较器的开环运算放大器读出。本文对比较器和反相器进行了比较,以确定哪种类型的前沿鉴别器可以获得最佳的单光子定时分辨率。用相同结构和相同操作条件的SPAD测试了在台积电65nm中实现的六种不同的猝灭电路(QC)。这使我们能够比较不同QC之间的实验结果。本文还提出了一种测量SPAD信号斜率的方法、SPAD过电压变化以及确定不同前沿鉴别器的附加抖动的模拟。对于一些鉴别器架构,需要级联晶体管来增加QC的最大过电压。本文还介绍了为比较器或基于反相器的鉴别器添加级联晶体管对单光子定时分辨率的影响。本文报道了由低阈值比较器读出的SPAD的6.3ps FWHM SPTR和使用级联晶体管的优化1V逆变器的6.8ps FWHM SPTR,以获得更高的过电压。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quenching Circuit Discriminator Architecture Impact on a Sub-10 ps FWHM Single-Photon Timing Resolution SPAD
In the field of radiation instrumentation, there is a desire to reach a sub-10 ps FWHM timing resolution for applications such as time-of-flight positron emission tomography, time-of-flight positron computed tomography and time-resolved calorimetry. One of the key parts of the detection chain for these applications is a single-photon detector and, in recent years, the first single-photon avalanche diode (SPAD) with a sub-10 ps timing resolution was presented. To reach such a timing resolution, the SPAD was read out by an operational amplifier operated in open-loop as a comparator. This paper presents a comparison between comparators and inverters to determine which type of leading-edge discriminator can obtain the best single-photon timing resolution. Six different quenching circuits (QCs) implemented in TSMC 65 nm are tested with SPADs of the same architecture and in the same operation conditions. This allows us to compare experimental results between the different QCs. This paper also presents a method to measure the SPAD signal slope, the SPAD excess voltage variation and simulations to determine the added jitter of different leading-edge discriminators. For some discriminator architectures, a cascode transistor was required to increase the maximum excess voltage of the QC. This paper also presents the impact on the single-photon timing resolution of adding a cascode transistor for a comparator or an inverter-based discriminator. This paper reports a 6.3 ps FWHM SPTR for a SPAD read out by a low-threshold comparator and a 6.8 ps FWHM SPTR for an optimized 1 V inverter using a cascode transistor for a higher excess voltage.
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来源期刊
Instruments
Instruments Physics and Astronomy-Instrumentation
CiteScore
2.60
自引率
0.00%
发文量
70
审稿时长
11 weeks
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