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Timing analysis of the black hole candidate EXO 1846-031 with Insight-HXMT monitoring

Authors :
Ju Guan
Yuan-Hang Zhang
Wei Zhang
Yue Zhang
W. C. Jiang
Y. G. Zheng
Cheng-Cheng Guo
Cheng-Kui Li
R. C. Shang
W. S. Wang
Shaolin Xiong
GuoQing Liu
Yongwei Dong
Tian-Xiang Chen
Yupeng Xu
Jian-Feng Zhou
Yu-Dong Gu
Qian-Qing Yin
Wei Li
Jianyin Nie
Wei Cui
X. L. Cao
Qingcui Bu
Yongjie Zhang
J. W. Yang
Jing-Yuan Liao
XiangYang Wen
Xiang Ma
Bing Li
Wen-Zhao Zhang
B. B. Wu
Tong Zhang
Zhao Zhang
Lian Tao
X. Y. Song
Zheng-Wei Li
Jing Jin
Zhi Chang
Mao-Shun Li
Yue Zhu
Jia Huo
Wei-Wei Cui
Xian Li
Hongwei Liu
Y. G. Li
Sheng Yang
Bo Lu
ShiJie Zheng
Jin-Lu Qu
H. W. Liu
Da-Wei Han
Wan-Chang Zhang
C. Cai
HongMei Zhang
Gang Li
Luhua Jiang
Yuan-Yuan Du
Min-Xue Fu
Yue Huang
He Xu
Juan Zhang
Xiaobo Li
Min Gao
Shuang-Nan Zhang
Zhi Zhang
Yu-Sa Wang
Li-Ming Song
Xufang Li
Liang Sun
Aimei Zhang
Tao Luo
Yu-Peng Chen
S. Xiao
Fangjun Lu
Li Chen
Shu Zhang
Guan-Hua Gao
Xiao-Fan Zhao
Ling-Jun Wang
N. Sai
He Gao
Q. Luo
Yifei Zhang
Bin Meng
Fan Zhang
Y. P. Chen
Mei Wu
Yu-Xuan Zhu
B. S. Liu
D. K. Zhou
Shu-Mei Jia
Ming-Yu Ge
Xiao-Jing Liu
Juan Wang
Xue-Feng Lu
Ge Ou
Chengmo Zhang
R. L. Zhuang
Hai-Sheng Zhao
C. X. Liu
Gang Chen
Yong Chen
Y. N. Liu
Y. Nang
Guang-Cheng Xiao
G. F. Wang
Jing-Kang Deng
Xiaohua Liang
Yuan You
Youli Tuo
Qi-Bin Yi
Bobing Wu
Ti-Pei Li
Y. J. Yang
Ying Tan
Zi-Liang Zhang
YongJie Jin
Yanji Yang
Yi Zhang
L. D. Kong
Chen Wang
Publication Year :
2020

Abstract

We present the observational results from a detailed timing analysis of the black hole candidate EXO 1846–031 during its outburst in 2019 with the observations of Insight-HXMT, NICER and MAXI. This outburst can be classified roughly into four different states. Type-C quasi-periodic oscillations (QPOs) observed by NICER (about 0.1–6 Hz) and Insight-HXMT (about 0.7–8 Hz) are also reported in this work. Meanwhile, we study various physical quantities related to QPO frequency. The QPO rms–frequency relationship in the energy band 1–10 keV indicates that there is a turning pointing in frequency around 2 Hz, which is similar to that of GRS 1915+105. A possible hypothesis for the relationship above may be related to the inclination of the source, which may require a high inclination to explain it. The relationships between QPO frequency and QPO rms, hardness, total fractional rms and count rate have also been found in other transient sources, which can indicate that the origin of type–C QPOs is non-thermal.

Details

Language :
English
Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....7df867a8060ce69cc748d1589250e7e9