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Absolute calibration of LHAASO WFCTA camera based on LED

Authors :
W. J. Long
Rong Xu
Cong Li
J. J. Xia
Houdun Zeng
Axikegu
Yongchun Wang
H. H. He
Xufang Li
X. X. Zhai
Y. D. Cui
L. Feng
H. B. Li
F. R. Zhu
Qie Sun
Yi Chen
F. Y. Li
C. F. Feng
D. H. Huang
Bin Zhou
J. Y. Shi
V. I. Stepanov
H. Zhu
Jun-Jie Wei
L. Z. Zhao
F. Ji
M. Zha
Jia Zhang
Y. H. Yao
Yi Zhang
B. Q. Qiao
Rui Zhang
Linbin Yang
Zhengguo Cao
M. L. Chen
Jianeng Zhou
Jian Wang
Chiming Jin
Zhe Cao
M. M. Ge
X. Zuo
Xuliang Chen
D.A. Kuleshov
Hong-Guang Wang
Y. He
Xiang-Yu Wang
E. S. Chen
Y. A. Han
N. Cheng
J. Fang
S. Hu
J. Y. Liu
G. M. Xiang
H. C. Song
S. P. Zhao
Zebo Tang
H. B. Xiao
W. Liu
L. X. Bai
Binyu Zhao
Yun-Feng Liang
Tao Zeng
Jixia Li
W. Zeng
Bin Ma
Donglian Xu
Z. Min
Xuelong Wang
Xiaofei Zhang
X. L. Guo
X. J. Dong
Hefan Li
S. H. Feng
Q. H. Chen
G. G. Xin
Warit Mitthumsiri
Kai-Kai Duan
Ying Zhang
P. F. Zhang
Z. X. Wang
H.Y. Gan
T. Wen
S. W. Cui
K. Levochkin
Hao Zhou
W. Wang
P. Pattarakijwanich
Kun Fang
D. M. Wei
H. Cai
S. Wu
Sina Chen
X. D. Sheng
Minghao Qi
C. X. Liu
Y. L. Feng
D. Bastieri
Q. An
B. Y. Pang
B. Liu
B. D. Wang
T. Ke
S. B. Yang
Bai Yibing
Lidan Gao
Y. W. Bao
Y. C. Nan
S. Z. Chen
Zhe Li
Shi-Qi Hu
X. H. You
H. B. Hu
H. Liu
X. T. Huang
J. C. He
Bingshui Gao
R. Zhou
L. Y. Wang
Z. H. Wang
Li Zhang
Z. G. Dai
M. J. Yang
Fan Yang
A. Masood
David Ruffolo
C. W. Yang
Q. Gao
Jun Liu
Z. K. Zeng
C. D. Gao
Lei Zhao
Z. C. Huang
B. B. Li
G. H. Gong
Lang Shao
M. J. Chen
Y. J. Wang
H. M. Zhang
D. della Volpe
He Zhang
Jianguo Qin
Y. J. Bi
Jun-Hui Fan
H. D. Liu
W. H. Huang
Y. D. Cheng
Z. B. Sun
Bo Zhang
Duo Yan
Z. X. Liu
Ruizhi Yang
X. N. Sun
Li-Sheng Geng
S. L. He
W. L. Li
Y. P. Wang
Y. H. Yu
Z. G. Yao
D. X. Xiao
J.W. Xia
X. G. Wang
H. L. Dai
Y. Y. Guo
Danzengluobu
Y. Q. Qi
H. Wang
W. Gao
Yi Liu
J. B. Zhao
Y. K. Hor
J. Chen
Zheng Wang
Q. B. Gou
L. P. Wang
Qizhi Huang
T. L. Chen
X. F. Wu
X. L. Ji
R. Lu
Cheng Guang Zhu
Zhuo Li
T. Montaruli
S. Q. Xi
Zhen Wang
Y.T. Fu
G. C. Xiao
Y. Z. Fan
X. H. Cui
Z. Y. Pei
B. D'Ettorre Piazzoli
W. X. Wu
H. Y. Jia
Y. Wang
B. Z. Dai
Alejandro Sáiz
Youping Li
J. T. Cai
R. Liu
Long Chen
Y. J. Wei
Fengqin Guo
J. F. Chang
V. Rulev
L. Xue
Liang Chen
Y. L. Xin
Yugang Zhang
Xinbo He
K. Jiang
X. J. Bi
X. J. Hu
Y. Zheng
L. Q. Yin
X. Y. Huang
J. W. Zhang
P. P. Zhang
Wenwu Tian
Pak-Hin Thomas Tam
H. C. Li
Z. X. Fan
Z. Y. You
J. Y. Yang
Ping Zhou
Junjie Mao
Y. Z. Li
F. Zheng
Y. Q. Guo
H. R. Wu
B. M. Chen
X. X. Zhou
Q. Yuan
Felix Aharonian
H. N. He
M. Heller
K. Li
L. L. Ma
Yu. V. Stenkin
Z. J. Jiang
J. Liu
Yong Zhang
R. N. Wang
C. Hou
Shuibin Lin
S. M. Liu
Lu Zhang
J. S. Wang
Cunguo Wang
E. W. Liang
N. Yin
K. J. Zhu
Minghui Liu
Shengxue Zhang
Cheng Li
Dong Liu
Jinyao Liu
C. Y. Wu
Y. M. Ye
Yunchao Liu
Y. M. Xing
H. K. Lv
X. H. Ma
Xiang Zhang
Y. Su
J. G. Guo
S. R. Zhang
M. H. Gu
L. X. Zhang
Jiawei Yan
Xin Li
Oleg Shchegolev
Source :
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 1021:165824
Publication Year :
2022
Publisher :
Elsevier BV, 2022.

Abstract

The main scientific goal of the LHAASO WFCTA experiment is to measure the cosmic ray energy spectra and composition from 10 TeV to 1 EeV. Cherenkov photons in the extensive air shower measured by the SiPM camera of Cherenkov telescopes can be used to reconstruct the cosmic ray energy. The absolute calibration of the camera is a crucial step to achieve the accurate measurement of the cosmic ray energy spectrum. A multi-wavelength cylindrical illuminator based on LEDs is developed and mounted inside the telescope to calibrate and monitor the camera, and the illuminator’s stability is better than 0.5% under the temperature variation from -26 to 26 ° C. A portable probe with a single photoelectron resolution of 21.6% is developed. After calibration by National Institute of Metrology, China (NIM), the probe is taken to the LHAASO site to measure the absolute photon density of the cylindrical illuminator inside the telescope. Based on the illuminator with known photon density, the photon conversion factor of the camera can be calibrated, and the overall calibration uncertainty is less than 2.6%.

Details

ISSN :
01689002
Volume :
1021
Database :
OpenAIRE
Journal :
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment
Accession number :
edsair.doi...........02bcc5a60d74f397e614a8b22baf684d
Full Text :
https://doi.org/10.1016/j.nima.2021.165824