探测器
专用集成电路
物理
炸薯条
大型强子对撞机
数码产品
二极管
信号(编程语言)
前端和后端
电气工程
计算机硬件
计算机科学
光电子学
光学
电信
核物理学
工程类
操作系统
程序设计语言
作者
G. D’amen,W. Chen,C. De La Taille,G. Giacomini,D. Marchand,M. Morenas,C. Muñoz Camacho,Enrico Rossi,N. Seguin-Moreau,L. Serin,I. M. Trigger,P.-K. Wang
标识
DOI:10.1088/1748-0221/17/11/p11028
摘要
Abstract The development of detectors that provide high resolution in four dimensions has attracted wide-spread interest in the scientific community for applications in high-energy physics, nuclear physics, medical imaging, mass spectroscopy as well as quantum information. However, finding a technology capable of fulfilling such aspiration proved to be an arduous task. Among other silicon-based candidates, the Low-Gain Avalanche Diode (LGAD) has already shown excellent timing performances but proved to be unsuitable for fine pixelization. Therefore, the AC-coupled LGAD (AC-LGAD) approach was introduced to provide high resolution in both time and space, making it a promising candidate for future 4D detectors. However, appropriate readout electronics must be developed to match the sensor's fast-time and fine-pitch capabilities. This is currently a major technological challenge. In this paper, we test AC-LGAD prototypes read out by the fast-time ASIC ALTIROC 0, originally developed for the readout of DC-coupled LGADs for the ATLAS experiment at the High Luminosity-LHC. Signal generated by either betas from a 90 Sr source or a focused infra-red laser were analyzed. This paper details the first successful readout of an AC-LGAD sensor using a readout chip. This result will pave the way for the design and construction of a new generation of AC-LGAD-based 4D detectors.
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