A Test System for the JUNO 20-inch PMTs Prior to Installation

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Hauptverfasser: Peng, Zhaoyuan, Dong, Haojie, Wen, Kaile, Guo, Xinzhou, Li, Yanfeng, Li, Songyi, Feng, Zeyuan, Xie, Wan, Liu, Shenghui, Chen, Chao, Xie, Xiaochuan, Hu, Jun, Fan, Lei, Qin, Zhonghua
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Veröffentlicht: 2025
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author Peng, Zhaoyuan
Dong, Haojie
Wen, Kaile
Guo, Xinzhou
Li, Yanfeng
Li, Songyi
Feng, Zeyuan
Xie, Wan
Liu, Shenghui
Chen, Chao
Xie, Xiaochuan
Hu, Jun
Fan, Lei
Qin, Zhonghua
author_facet Peng, Zhaoyuan
Dong, Haojie
Wen, Kaile
Guo, Xinzhou
Li, Yanfeng
Li, Songyi
Feng, Zeyuan
Xie, Wan
Liu, Shenghui
Chen, Chao
Xie, Xiaochuan
Hu, Jun
Fan, Lei
Qin, Zhonghua
contents The JUNO experiment requires an excellent energy resolution of 3\% at 1 MeV. To achieve this objective, a total of 20,012 20-inch photomultiplier tubes (PMTs) will be deployed for JUNO, comprising 15,012 multi-channel plate (MCP) PMTs and 5,000 dynode PMTs. Currently, JUNO is in the process of detector installation, with PMTs being installed from the top to the bottom of the stainless-steel structure located in the underground experimental hall. In order to validate the functionality of the PMTs and ensure there are no malfunctions prior to installation, a test system has been established at the JUNO site, and testing is being conducted. This paper presents an overview of the test system and reports on the initial test results.
format Preprint
id arxiv_https___arxiv_org_abs_2502_16146
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A Test System for the JUNO 20-inch PMTs Prior to Installation
Peng, Zhaoyuan
Dong, Haojie
Wen, Kaile
Guo, Xinzhou
Li, Yanfeng
Li, Songyi
Feng, Zeyuan
Xie, Wan
Liu, Shenghui
Chen, Chao
Xie, Xiaochuan
Hu, Jun
Fan, Lei
Qin, Zhonghua
Instrumentation and Detectors
High Energy Physics - Experiment
The JUNO experiment requires an excellent energy resolution of 3\% at 1 MeV. To achieve this objective, a total of 20,012 20-inch photomultiplier tubes (PMTs) will be deployed for JUNO, comprising 15,012 multi-channel plate (MCP) PMTs and 5,000 dynode PMTs. Currently, JUNO is in the process of detector installation, with PMTs being installed from the top to the bottom of the stainless-steel structure located in the underground experimental hall. In order to validate the functionality of the PMTs and ensure there are no malfunctions prior to installation, a test system has been established at the JUNO site, and testing is being conducted. This paper presents an overview of the test system and reports on the initial test results.
title A Test System for the JUNO 20-inch PMTs Prior to Installation
topic Instrumentation and Detectors
High Energy Physics - Experiment
url https://arxiv.org/abs/2502.16146