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research article

Muon flux measurement at China Jinping Underground Laboratory

Guo, Zi-yi
•
Bathe-Peters, Lars
•
Chen, Shao-min
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February 1, 2021
Chinese Physics C

China Jinping Underground Laboratory (CJPL) is ideal for studying solar, geo-, and supernova neutrinos. A precise measurement of the cosmic-ray background is essential in proceeding with R&D research for these MeV-scale neutrino experiments. Using a 1-ton prototype detector for the Jinping Neutrino Experiment (JNE), we detected 264 high-energy muon events from a 645.2-day dataset from the first phase of CJPL (CJPL-I), reconstructed their directions, and measured the cosmic-ray muon flux to be (3.53 +/- 0.22(stat.) +/- 0.07(sys.)) x 10(-10) cm(-2)s(-1). The observed angular distributions indicate the leakage of cosmic-ray muon background and agree with simulation data accounting for Jinping mountain's terrain. A survey of muon fluxes at different laboratory locations, considering both those situated under mountains and those down mine shafts, indicates that the flux at the former is generally a factor of (4 +/- 2) larger than at the latter, with the same vertical overburden. This study provides a convenient back-of-the-envelope estimation for the muon flux of an underground experiment.

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Type
research article
DOI
10.1088/1674-1137/abccae
Web of Science ID

WOS:000612624300001

Author(s)
Guo, Zi-yi
Bathe-Peters, Lars
Chen, Shao-min
Chouaki, Mourad
Dou, Wei
Guo, Lei
Hussain, Ghulam
Li, Jin-jing
Liu, Qian
Luo, Guang
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Date Issued

2021-02-01

Publisher

IOP PUBLISHING LTD

Published in
Chinese Physics C
Volume

45

Issue

2

Article Number

025001

Subjects

Physics, Nuclear

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Physics, Particles & Fields

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Physics

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cjpl

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cosmic-ray muon flux

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angular distribution

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neutrino detector

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liquid scintillator

Editorial or Peer reviewed

REVIEWED

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March 26, 2021
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/176827
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