为高能宇宙辐射探测设施中的过渡辐射探测器设计和制作读出电子装置原型

IF 3.6 1区 物理与天体物理 Q1 NUCLEAR SCIENCE & TECHNOLOGY
Jie-Yu Zhu, Yang-Zhou Su, Hai-Bo Yang, Fen-Hua Lu, Yan Yang, Xi-Wen Liu, Ping Wei, Shu-Cai Wan, Hao-Qing Xie, Xian-Qin Li, Cong Dai, Hui-Jun Hu, Hong-Bang Liu, Shu-Wen Tang, Cheng-Xin Zhao
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引用次数: 0

摘要

高能宇宙辐射探测(HERD)设施计划于 2027 年发射,并计划安装在中国空间站上。它既是暗物质粒子探测器,也是宇宙射线仪器和高能伽马射线观测站。放置在其一侧的过渡辐射探测器具有双重用途:(1) 在 TeV 能量范围内校准 HERD 的电磁量热计;(2) 作为高能伽马射线的独立探测器。本文展示了过渡辐射探测器的电子读出原型设计,旨在利用 SAMPA 特定应用集成电路芯片精确测量阳极的电荷。从噪声、线性度和分辨率方面对原型系统的电子性能进行了评估。通过提出的设计,每个电子通道的动态范围可达 0-100 fC,有效值噪声不超过 0.15 fC,积分非线性度为 0.2%。为了进一步验证读出电子性能,还与探测器进行了联合测试,结果表明原型系统能够满足探测器的科学目标要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Design and prototyping of the readout electronics for the transition radiation detector in the high energy cosmic radiation detection facility

Design and prototyping of the readout electronics for the transition radiation detector in the high energy cosmic radiation detection facility

The high energy cosmic-radiation detection (HERD) facility is planned to launch in 2027 and scheduled to be installed on the China Space Station. It serves as a dark matter particle detector, a cosmic ray instrument, and an observatory for high-energy gamma rays. A transition radiation detector placed on one of its lateral sides serves dual purpose, (i) calibrating HERD’s electromagnetic calorimeter in the TeV energy range, and (ii) serving as an independent detector for high-energy gamma rays. In this paper, the prototype readout electronics design of the transition radiation detector is demonstrated, which aims to accurately measure the charge of the anodes using the SAMPA application specific integrated circuit chip. The electronic performance of the prototype system is evaluated in terms of noise, linearity, and resolution. Through the presented design, each electronic channel can achieve a dynamic range of 0–100 fC, the RMS noise level not exceeding 0.15 fC, and the integral nonlinearity was <0.2%. To further verify the readout electronic performance, a joint test with the detector was carried out, and the results show that the prototype system can satisfy the requirements of the detector’s scientific goals.

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来源期刊
Nuclear Science and Techniques
Nuclear Science and Techniques 物理-核科学技术
CiteScore
5.10
自引率
39.30%
发文量
141
审稿时长
5 months
期刊介绍: Nuclear Science and Techniques (NST) reports scientific findings, technical advances and important results in the fields of nuclear science and techniques. The aim of this periodical is to stimulate cross-fertilization of knowledge among scientists and engineers working in the fields of nuclear research. Scope covers the following subjects: • Synchrotron radiation applications, beamline technology; • Accelerator, ray technology and applications; • Nuclear chemistry, radiochemistry, radiopharmaceuticals, nuclear medicine; • Nuclear electronics and instrumentation; • Nuclear physics and interdisciplinary research; • Nuclear energy science and engineering.
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