Back to Search Start Over

Prospects for a Multi-TeV Gamma-ray Sky Survey with the LHAASO Water Cherenkov Detector Array

Authors :
Guoqing Xiao
Bo Gao
Yu-Hua Yao
B. Q. Qiao
E. W. Liang
X. G. Wang
Yong Zhang
X. C. Chang
X. H. Cui
S. Wu
F. Y. Li
M. M. Ge
H. L. Dai
L. X. Bai
Z. G. Yao
Lei Zhao
Chang Jin
L. Chen
J. W. Zhao
H. D. Liu
Duo Yan
BZ Zhao
Z. X. Liu
Y. C. Nan
H. B. Li
H. K. Lv
B. D'Ettorre Piazzoli
W. X. Wu
Xiao-Yang Zhang
Y. D. Cheng
Z. H. Wang
F. R. Zhu
Y. Wang
M. Zha
P. Zhou
Yi Chen
C. X. Liu
Xufang Li
Yinong Liu
Jun-Jie Wei
Y. Y. Guo
R. Y. Liu
X. F. Wu
L. Zhang
X. J. Wang
H. M. Zhang
V. Rulev
Xiao-Hu Zhang
Y. Yu
C. Y. Wu
Zhe Cao
W. H. Huang
Guanghua Gong
Li-Sheng Geng
B. M. Chen
L. Xue
B. Liu
L. L. Yang
D. H. Huang
Y. A. Han
B. B. Zhang
D. M. Wei
Y. D. Cui
S. R. Zhang
Ziyi Wang
Zhengguo Cao
X. L. Ji
R. Lu
Jianrong Zhou
M. J. Yang
Z. Y. Pei
Y. M. Ye
S. P. Chao
H. C. Li
Jun He
Qiang Yuan
G. M. Xiang
Z. J. Jiang
Jiaxing Li
V. Alekseenko
J. F. Chang
Danzengluobu
H. Y. Jia
J. Chen
Zebo Tang
P. Pattarakijwanich
J. S. Liu
H. Y. Zhang
J. R. Mao
Wang Yanfang
H. Wang
D. Bastieri
Liang-Liang Wang
Jie Zhang
Teresa Montaruli
Cong Li
Y. Li
K. Levochkin
X. J. Bi
T. X. Zeng
Chao-Peng Wang
J. W. Zhang
S. Z. Chen
H. Liu
X. D. Sheng
Yu. V. Stenkin
C. Hou
H. Zhu
Z. K. Zeng
P. P. Zhang
P. F. Zhang
Wenwu Tian
W. J. Long
Lanqing Ma
G. G. Xin
S. H. Feng
X. Y. Wang
X. Zuo
J. C. Wang
W. H. Wang
R. Zhou
N. Yin
H. B. Hu
C. F. Feng
S. M. Liu
X. T. Huang
Yi Zhang
N. Cheng
Cheng Li
Ying Zhang
Hong-Jie Li
H. Li
Y. Zheng
M. L. Chen
Axikegu
S. B. Yang
S. W. Cui
F. Ji
J. H. Fan
Y. Z. Fan
Bo-Qiang Ma
C. W. Yang
L. Feng
Z. G. Dai
L. Z. Zhao
L. Q. Yin
Wang Yingjie
Wei Liu
Zujian Wang
Z. Li
W. Zeng
Shengxue Zhang
Q. B. Gou
Huihai He
M. H. Gu
J. Fang
X. L. Chen
H. G. Wang
O. Shchegolev
S. L. He
K. Jiang
F. Zheng
T. L. Chen
W. Gao
T. Wen
L. Shao
Yucheng Feng
M. Y. Qi
X. X. Zhou
Yiwei Wang
Felix Aharonian
K. Li
Y. F. Liang
Ruizhi Yang
Y. W. Bao
David Ruffolo
Z. Y. You
S. Hu
J. Y. Liu
Ming Chen
Warit Mitthumsiri
V. Stepanov
Q. An
Q. Gao
K. J. Zhu
Z. B. Sun
P. H. T. Tam
Y. Q. Guo
H. R. Wu
B. Z. Dai
D. Liu
M. Heller
Sina Chen
H. D. Zeng
X. H. You
Renxin Xu
C. G. Zhu
Minghui Liu
X. H. Ma
Y. He
J. R. Shi
Yuan-Ming Xing
F. F. Yang
X. X. Li
W. L. Li
Q. H. Chen
D. della Volpe
Huang Qiyan
A. Masood
H. Cai
Alejandro Sáiz
Source :
Chines Physics C
Publication Year :
2020
Publisher :
arXiv, 2020.

Abstract

The Water Cherenkov Detector Array (WCDA) is a major component of the Large High Altitude Air Shower Array Observatory (LHAASO), a new generation cosmic-ray experiment with unprecedented sensitivity, currently under construction. The WCDA is aimed at the study of TeV $\gamma$-rays. In order to evaluate the prospects of searching for TeV $\gamma$-ray sources with the WCDA, we present in this paper a projection for the one-year sensitivity of the WCDA to TeV $\gamma$-ray sources from TeVCat (footnote: http://tevcat.uchicago.edu) using an all-sky approach. Out of 128 TeVCat sources observable to the WCDA up to a zenith angle of $45^\circ$, we estimate that 42 would be detectable for one year of observations at a median energy of 1 TeV. Most of them are Galactic sources, and the extragalactic sources are Active Galactic Nuclei (AGN).<br />Comment: 10 pages,10 figures, it is to be published in Chinese Physics C

Details

Database :
OpenAIRE
Journal :
Chines Physics C
Accession number :
edsair.doi.dedup.....1af58755e76ef68597cd783002564de0
Full Text :
https://doi.org/10.48550/arxiv.2002.04819