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Insight-HXMT observations of the first binary neutron star merger GW170817

Authors :
Xufang Li
C. L. Zou
Yongjie Zhang
Yifei Zhang
Lian Tao
N. Sai
Ti-Pei Li
Shuang-Nan Zhang
Bin Meng
Aimei Zhang
Tong Zhang
Ming-Yu Ge
Xiao-Jing Liu
Yupeng Xu
Yuan Liu
Jing Jin
J. W. Yang
ShaoZhen Liu
Guan-Hua Gao
Xian Li
Sheng Yang
X. L. Cao
G. C. Xiao
Yong Chen
LinLi Yan
Shu-Mei Jia
Y. Tan
XiangYang Wen
W. C. Jiang
Yu-Dong Gu
Zheng-Wei Li
LuHua Jiang
L. Chen
M. X. Fu
W. S. Wang
Huanyu Wang
Wei-Wei Cui
Jianling Zhao
Yue Zhang
Yanji Yang
Juan Zhang
Yu-Xuan Zhu
Mao-Shun Li
Tian-Xiang Chen
Shaolin Xiong
Ju Guan
Jianyin Nie
Ge Ou
Wei Li
Cheng-Cheng Guo
Liang Sun
Bing Li
Wei Cui
Cheng-Kui Li
Yu-Peng Chen
Fan Zhang
H. Gao
Jin-Lu Qu
Yi Zhang
Yuan-Yuan Du
Wei Hu
Xiao-Fan Zhao
Yongwei Dong
Yue Huang
Gang Chen
X. H. Liang
Yue Zhu
Fangjun Lu
WenHui Tao
Hai-Sheng Zhao
He Xu
Juan Wang
H. T. Liu
Y. B. Chen
Youli Tuo
T. Luo
Jia Huo
W. Z. Zhang
ZiJian Li
Zhao Zhang
Gang Li
Yu-Sa Wang
Mei Wu
Shu Zhang
J. Y. Liao
Wei Zhang
Bo Lu
Y. N. Liu
Zi-Liang Zhang
Zhi Chang
GuoQing Liu
Da-Wei Han
HongMei Zhang
YongJie Jin
Y. Nang
ChunLei Zhang
G. F. Wang
Xiang Ma
Yanguo Li
Li-Ming Song
Xue-Feng Lu
M. Gao
Shi-Jie Zheng
Qiang Zhang
Bobing Wu
C. L. Zhang
C. X. Liu
J. K. Deng
Wan-Chang Zhang
Xiaobo Li
Publication Year :
2017
Publisher :
arXiv, 2017.

Abstract

Finding the electromagnetic (EM) counterpart of binary compact star merger, especially the binary neutron star (BNS) merger, is critically important for gravitational wave (GW) astronomy, cosmology and fundamental physics. On Aug. 17, 2017, Advanced LIGO and \textit{Fermi}/GBM independently triggered the first BNS merger, GW170817, and its high energy EM counterpart, GRB 170817A, respectively, resulting in a global observation campaign covering gamma-ray, X-ray, UV, optical, IR, radio as well as neutrinos. The High Energy X-ray telescope (HE) onboard \textit{Insight}-HXMT (Hard X-ray Modulation Telescope) is the unique high-energy gamma-ray telescope that monitored the entire GW localization area and especially the optical counterpart (SSS17a/AT2017gfo) with very large collection area ($\sim$1000 cm$^2$) and microsecond time resolution in 0.2-5 MeV. In addition, \textit{Insight}-HXMT quickly implemented a Target of Opportunity (ToO) observation to scan the GW localization area for potential X-ray emission from the GW source. Although it did not detect any significant high energy (0.2-5 MeV) radiation from GW170817, its observation helped to confirm the unexpected weak and soft nature of GRB 170817A. Meanwhile, \textit{Insight}-HXMT/HE provides one of the most stringent constraints (~10$^{-7}$ to 10$^{-6}$ erg/cm$^2$/s) for both GRB170817A and any other possible precursor or extended emissions in 0.2-5 MeV, which help us to better understand the properties of EM radiation from this BNS merger. Therefore the observation of \textit{Insight}-HXMT constitutes an important chapter in the full context of multi-wavelength and multi-messenger observation of this historical GW event.<br />Comment: accepted by Science China - Physics, Mechanics & Astronomy. Planned to publish on Oct 17, but postponed due to a problem on pdf file

Details

Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....d56468fcf3af3de8c88c0ba9a961e42b
Full Text :
https://doi.org/10.48550/arxiv.1710.06065