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

Authors :
Liu, He-Xin
Huang, Yue
Xiao, Guang-Cheng
Bu, Qing-Cui
Qu, Jin-Lu
Zhang, Shu
Zhang, Shuang-Nan
Jia, Shu-Mei
Lu, Fang-Jun
Ma, Xiang
Tao, Lian
Zhang, Wei
Chen, Li
Song, Li-Ming
Li, Ti-Pei
Xu, Yu-Peng
Cao, Xue-Lei
Chen, Yong
Liu, Cong-Zhan
Cai, Ce
Chang, Zhi
Chen, Gang
Chen, Tian-Xiang
Chen, Yi-Bao
Chen, Yu-Peng
Cui, Wei
Cui, Wei-Wei
Deng, Jing-Kang
Dong, Yong-Wei
Du, Yuan-Yuan
Fu, Min-Xue
Gao, Guan-Hua
Gao, He
Gao, Min
Ge, Ming-Yu
Gu, Yu-Dong
Guan, Ju
Guo, Cheng-Cheng
Han, Da-Wei
Huo, Jia
Jiang, Lu-Hua
Jiang, Wei-Chun
Jin, Jing
Jin, Yong-Jie
Kong, Ling-Da
Li, Bing
Li, Cheng-Kui
Li, Gang
Li, Mao-Shun
Li, Wei
Li, Xian
Li, Xiao-Bo
Li, Xu-Fang
Li, Yang-Guo
Li, Zheng-Wei
Liang, Xiao-Hua
Liao, Jing-Yuan
Liu, Bai-Sheng
Liu, Guo-Qing
Liu, Hong-Wei
Liu, Xiao-Jing
Liu, Yi-Nong
Lu, Bo
Lu, Xue-Feng
Luo, Qi
Luo, Tao
Meng, Bin
Nang, Yi
Nie, Jian-Yin
Ou, Ge
Sai, Na
Shang, Ren-Cheng
Song, Xin-Ying
Sun, Liang
Tan, Ying
Tuo, You-Li
Wang, Chen
Wang, Guo-Feng
Wang, Juan
Wang, Ling-Jun
Wang, Weng-Shuai
Wang, Yu-Sa.
Wen, Xiang-Yang
Wu, Bai-Yang
Wu, Bo-Bing
Wu, Mei
Xiao, Shuo
Xiong, Shao-Lin
Xu, He
Yang, Jia-Wei
Yang, Sheng
Yang, Yan-Ji
Yang, Yi-Jung
Yi, Qi-Bin
Yin, Qian-Qing
You, Yuan
Zhang, Ai-Mei
Zhang, Cheng-Mo
Zhang, Fan
Zhang, Hong-Mei
Zhang, Juan
Zhang, Tong
Zhang, Wan-Chang
Zhang, Wen-Zhao
Yi-Zhang
Zhang, Yi-Fei
Zhang, Yong-Jie
Zhang, Yuan-Hang
Zhang, Yue
Zhang, Zhao
Zhang, Zhi
Zhang, Zi-Liang
Zhao, Hai-Sheng
Zhao, Xiao-Fan
Zheng, Shi-Jie
Zheng, Yao-Guang
Zhou, Deng-Ke
Zhou, Jian-Feng
Zhu, Yu-Xuan
Zhuang, Ren-Lin
Zhu, Yue
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 classfied roughly into four different states. Type-C quasi-periodic oscillations (QPOs) observed by NICER (about 0.1-6Hz) and Insight-HXMT (about 0.7-8Hz) are also reported in this work. Meanwhile, we study various physical quantities related to QPO frequency.The QPO rms-frequency relationship in three 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

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2009.10956
Document Type :
Working Paper
Full Text :
https://doi.org/10.1088/1674-4527/21/3/70