中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Spectral and Timing Analysis of the Black Hole Transient MAXI J1631–479 During its 2019 Outburst Observed with Insight-HXMT

文献类型:期刊论文

作者Fu,Yu-Cong1,2,4; Song,L. M.2; Ding,G. Q.4; Zhang,S. N.2; Qu,J. L.2; Zhang,S.2; Zhang,L.2; Bu,Q. C.3; Huang,Y.2; Ma,X.2
刊名Research in Astronomy and Astrophysics
出版日期2022-10-12
卷号22期号:11
关键词accretion accretion disks stars: black holes X-rays: binaries
ISSN号1674-4527
DOI10.1088/1674-4527/ac8d80
通讯作者Fu,Yu-Cong()
英文摘要Abstract We report spectral and timing analysis of the black hole transient MAXI J1631–479 during the hard intermediate state of its 2019 outburst from the Insight-Hard X-ray Modulation Telescope (Insight-HXMT) observations. We find that the energy dependence of the type-C quasi-periodic oscillation (QPO) frequency evolves with time: during the initial rise of a small flare (~MJD 58526.0-58527.1), the QPO frequency increases with increasing energy from ~1 to ~100 keV, and then the frequency remains constant after MJD 58527.1. We discover a possible new phenomenon of Fe line’s QPO frequency jump that has never been observed for other black hole transients: during the small flare, the QPO frequency around the Fe line energy is higher than any other energy band, with the frequency difference Δf = 0.25 ± 0.08 Hz between 5.5–7.5 keV and other energy bands. The spectral analysis shows that the evolution of QPOs is related to the equivalent width of the narrow Fe line, and its equivalent width increases during this small flare. We propose that the QPO frequency difference results from the differential precession of a vertically extended jet, and the higher QPO frequency of Fe line could be caused by the layered jet when the jet scale increases. At the same time, the evolution of QPOs is related to the accretion rate, while the energy dependence of QPOs supports the existence of deceleration in the vertically distributed jet.
语种英语
WOS记录号IOP:RAA_22_11_115002
出版者National Astromonical Observatories, CAS and IOP Publishing
源URL[http://ir.xao.ac.cn/handle/45760611-7/6193]  
专题研究单元未命名
通讯作者Fu,Yu-Cong
作者单位1.University of Chinese Academy of Sciences, Chinese Academy of Sciences, Beijing 100049, China
2.Key Laboratory of Particle Astrophysics, Institute of High Energy Physics, Chinese Academy of Sciences, Beijing 100049, China; songlm@ihep.ac.cn
3.Institut für Astronomie und Astrophysik, Kepler Center for Astro and Particle Physics, Eberhard Karls Universit?t, Sand 1, D-72076 Tübingen, Germany
4.Xinjiang Astronomical Observatory, Chinese Academy of Sciences, Urumqi, Xinjiang 830011, China; fuyucong@xao.ac.cn, dinggq@xao.ac.cn
推荐引用方式
GB/T 7714
Fu,Yu-Cong,Song,L. M.,Ding,G. Q.,et al. Spectral and Timing Analysis of the Black Hole Transient MAXI J1631–479 During its 2019 Outburst Observed with Insight-HXMT[J]. Research in Astronomy and Astrophysics,2022,22(11).
APA Fu,Yu-Cong.,Song,L. M..,Ding,G. Q..,Zhang,S. N..,Qu,J. L..,...&Xu,Y. C..(2022).Spectral and Timing Analysis of the Black Hole Transient MAXI J1631–479 During its 2019 Outburst Observed with Insight-HXMT.Research in Astronomy and Astrophysics,22(11).
MLA Fu,Yu-Cong,et al."Spectral and Timing Analysis of the Black Hole Transient MAXI J1631–479 During its 2019 Outburst Observed with Insight-HXMT".Research in Astronomy and Astrophysics 22.11(2022).

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