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Slow control and monitoring system at the JSNS$^{2}$

Authors :
H. Jeon
S. Ajimura
Intae Yu
I. Stancu
H. Furuta
S. J. M. Peeters
Tomoyuki Konno
I. S. Yeo
J. S. Jang
E.J. Kim
Y. Hino
H. I. Jang
F. Suekane
S. Monjushiro
D H Lee
C. Yoo
T. Maruyama
J. S. Park
Yorihito Sugaya
R. Ujiie
Gerrit Roellinghoff
K. Nishikawa
J. Spitz
S. Sakamoto
M. Taira
J. W. Choi
Tatsushi Shima
J. Y. Kim
Shin-ichiro Meigo
S. Jeon
Myung-Ki Cheoun
Shoichi Hasegawa
Takeo Kawasaki
J. R. Jordan
D. E. Jung
M. Botran
J. H. Choi
J Goh
C. D. Shin
Minfang Yeh
K. K. Joo
K. Suzuya
Toshihiko Hiraiwa
I. T. Lim
Y. Kasugai
E. Marzec
T. Dodo
Dong Ho Moon
Masaharu Nomachi
Carsten Rott
Sin Kyu Kang
Masahide Harada
M. Jang
H. Ray
T. Nakano
M. Y. Pac
S. Lee
S. B. Kim
W. Kim
A. Zohaib
M. Niiyama
Kenji Sakai
Publication Year :
2020

Abstract

The JSNS$^2$ experiment is aimed to search for sterile neutrino oscillations using a neutrino beam from muon decays at rest. The JSNS$^2$ detector contains 17 tons of 0.1\% gadolinium (Gd) loaded liquid scintillator (LS) as a neutrino target. Detector construction was completed in the spring of 2020. A slow control and monitoring system (SCMS) was implemented for reliable control and quick monitoring of the detector operational status and environmental conditions. It issues an alarm if any of the monitored parameters exceed a preset acceptable range. The SCMS monitors the high voltage (HV) of the photomultiplier tubes (PMTs), the LS level in the detector, possible LS overflow and leakage, the temperature and air pressure in the detector, the humidity of the experimental hall, and the LS flow rate during filling and extraction. An initial 10 days of data-taking with a neutrino beam was done following a successful commissioning of the detector and SCMS in June 2020. In this paper, we present a description of the assembly and installation of the SCMS and its performance.<br />12 pages, 11 figures

Details

Language :
English
Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....010969463b42bb9cd5c7ffdbcf50e0d8