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Insight-HXMT observations of jet-like corona in a black hole X-ray binary MAXI J1820+070.


ABSTRACT: A black hole X-ray binary produces hard X-ray radiation from its corona and disk when the accreting matter heats up. During an outburst, the disk and corona co-evolves with each other. However, such an evolution is still unclear in both its geometry and dynamics. Here we report the unusual decrease of the reflection fraction in MAXI J1820+070, which is the ratio of the coronal intensity illuminating the disk to the coronal intensity reaching the observer, as the corona is observed to contrast during the decay phase. We postulate a jet-like corona model, in which the corona can be understood as a standing shock where the material flowing through. In this dynamical scenario, the decrease of the reflection fraction is a signature of the corona's bulk velocity. Our findings suggest that as the corona is observed to get closer to the black hole, the coronal material might be outflowing faster.

SUBMITTER: You B 

PROVIDER: S-EPMC7884741 | biostudies-literature | 2021 Feb

REPOSITORIES: biostudies-literature

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Insight-HXMT observations of jet-like corona in a black hole X-ray binary MAXI J1820+070.

You Bei B   Tuo Yuoli Y   Li Chengzhe C   Wang Wei W   Zhang Shuang-Nan SN   Zhang Shu S   Ge Mingyu M   Luo Chong C   Liu Bifang B   Yuan Weimin W   Dai Zigao Z   Liu Jifeng J   Qiao Erlin E   Jin Chichuan C   Liu Zhu Z   Czerny Bozena B   Wu Qingwen Q   Bu Qingcui Q   Cai Ce C   Cao Xuelei X   Chang Zhi Z   Chen Gang G   Chen Li L   Chen Tianxiang T   Chen Yibao Y   Chen Yong Y   Chen Yupeng Y   Cui Wei W   Cui Weiwei W   Deng Jingkang J   Dong Yongwei Y   Du Yuanyuan Y   Fu Minxue M   Gao Guanhua G   Gao He H   Gao Min M   Gu Yudong Y   Guan Ju J   Guo Chengcheng C   Han Dawei D   Huang Yue Y   Huo Jia J   Jia Shumei S   Jiang Luhua L   Jiang Weichun W   Jin Jing J   Jin Yongjie Y   Kong Lingda L   Li Bing B   Li Chengkui C   Li Gang G   Li Maoshun M   Li Tipei T   Li Wei W   Li Xian X   Li Xiaobo X   Li Xufang X   Li Yanguo Y   Li Zhengwei Z   Liang Xiaohua X   Liao Jinyuan J   Liu Congzhan C   Liu Guoqing G   Liu Hongwei H   Liu Xiaojing X   Liu Yinong Y   Lu Bo B   Lu Fangjun F   Lu Xuefeng X   Luo Qi Q   Luo Tao T   Ma Xiang X   Meng Bin B   Nang Yi Y   Nie Jianyin J   Ou Ge G   Qu Jinlu J   Sai Na N   Shang Rencheng R   Song Liming L   Song Xinying X   Sun Liang L   Tan Ying Y   Tao Lian L   Wang Chen C   Wang Guofeng G   Wang Juan J   Wang Lingjun L   Wang Wenshuai W   Wang Yusa Y   Wen Xiangyang X   Wu Baiyang B   Wu Bobing B   Wu Mei M   Xiao Guangcheng G   Xiao Shuo S   Xiong Shaolin S   Xu Yupeng Y   Yang Jiawei J   Yang Sheng S   Yang Yanji Y   Yi Qibin Q   Yin Qianqing Q   You Yuan Y   Zhang Aimei A   Zhang Chengmo C   Zhang Fan F   Zhang Hongmei H   Zhang Juan J   Zhang Tong T   Zhang Wanchang W   Zhang Wei W   Zhang Wenzhao W   Zhang Yi Y   Zhang Yifei Y   Zhang Yongjie Y   Zhang Yue Y   Zhang Zhao Z   Zhang Ziliang Z   Zhao Haisheng H   Zhao Xiaofan X   Zheng Shijie S   Zhou Dengke D   Zhou Jianfeng J   Zhu Yuxuan Y   Zhu Yue Y  

Nature communications 20210215 1


A black hole X-ray binary produces hard X-ray radiation from its corona and disk when the accreting matter heats up. During an outburst, the disk and corona co-evolves with each other. However, such an evolution is still unclear in both its geometry and dynamics. Here we report the unusual decrease of the reflection fraction in MAXI J1820+070, which is the ratio of the coronal intensity illuminating the disk to the coronal intensity reaching the observer, as the corona is observed to contrast du  ...[more]

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