Performance studies of a SiPM-readout system with a pico-second timing chip

Fuente: arXiv
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Hauptverfasser: Xia, Xin, Du, Dejing, Jiang, Xiaoshan, Liu, Yong, Lu, Bo, Lyu, Junguang, Qi, Baohua, Ruan, Manqi, Yan, Xiongbo
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Veröffentlicht: 2024
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author Xia, Xin
Du, Dejing
Jiang, Xiaoshan
Liu, Yong
Lu, Bo
Lyu, Junguang
Qi, Baohua
Ruan, Manqi
Yan, Xiongbo
author_facet Xia, Xin
Du, Dejing
Jiang, Xiaoshan
Liu, Yong
Lu, Bo
Lyu, Junguang
Qi, Baohua
Ruan, Manqi
Yan, Xiongbo
contents A pico-second timing (PIST) front-end electronic chip has been developed using $55~\mathrm{nm}$ CMOS technology for future electron-positron collider experiments (namely Higgs factories). Extensive tests have been performed to evaluate the timing performance of a dedicated SiPM-readout system equipped with a PIST chip. The results show that the system timing resolution can achieve $45~\mathrm{ps}$ for SiPM signals at the minimum-ionizing particles (MIP) level ($200~\mathrm{p.e.}$) and better than $ 10~\mathrm{ps}$ for signals larger than $1200~\mathrm{p.e.}$, while the PIST intrinsic timing resolution is $4.76 \pm 0.60~\mathrm{ps}$. The PIST dynamic range has been further extended using the time-over-threshold (ToT) technique, which can cover the SiPM response spanning from $\mathrm{\sim 900~p.e.}$ to $~\mathrm{\sim 40000~p.e.}$.
format Preprint
id arxiv_https___arxiv_org_abs_2402_02641
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Performance studies of a SiPM-readout system with a pico-second timing chip
Xia, Xin
Du, Dejing
Jiang, Xiaoshan
Liu, Yong
Lu, Bo
Lyu, Junguang
Qi, Baohua
Ruan, Manqi
Yan, Xiongbo
Instrumentation and Detectors
A pico-second timing (PIST) front-end electronic chip has been developed using $55~\mathrm{nm}$ CMOS technology for future electron-positron collider experiments (namely Higgs factories). Extensive tests have been performed to evaluate the timing performance of a dedicated SiPM-readout system equipped with a PIST chip. The results show that the system timing resolution can achieve $45~\mathrm{ps}$ for SiPM signals at the minimum-ionizing particles (MIP) level ($200~\mathrm{p.e.}$) and better than $ 10~\mathrm{ps}$ for signals larger than $1200~\mathrm{p.e.}$, while the PIST intrinsic timing resolution is $4.76 \pm 0.60~\mathrm{ps}$. The PIST dynamic range has been further extended using the time-over-threshold (ToT) technique, which can cover the SiPM response spanning from $\mathrm{\sim 900~p.e.}$ to $~\mathrm{\sim 40000~p.e.}$.
title Performance studies of a SiPM-readout system with a pico-second timing chip
topic Instrumentation and Detectors
url https://arxiv.org/abs/2402.02641