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A Phase-resolved View of the Low-frequency Quasiperiodic Oscillations from the Black Hole Binary MAXI J1820+070
Shui, Qing C.1,2; Zhang, S.1; Zhang, Shuang N.1,2; Chen, Yu P.1; Kong, Ling D.3; Wang, Peng J.1,2; Peng, Jing Q.1,2; Ji, L.4; Santangelo, A.3; Yin, Hong X.5; Qu, Jin L.1; Tao, L.1; Ge, Ming Y.1; Huang, Y.1; Zhang, L.1; Liu, Hong H.6; Zhang, P.7; Yu, W.1; Chang, Z.1; Li, J.8,9; Ye, Wen T.1,2; Li, Pan P.1,2; Yu, Zhuo L.1; Yan Z(颜哲)1,2,10
发表期刊ASTROPHYSICAL JOURNAL
2023-11-01
卷号957期号:2
DOI10.3847/1538-4357/acfc42
产权排序第10完成单位
收录类别SCI
摘要

Although low-frequency quasiperiodic oscillations (LFQPOs) are commonly detected in the X-ray light curves of accreting black hole X-ray binaries, their origin still remains elusive. In this study, we conduct phase-resolved spectroscopy in a broad energy band for LFQPOs in MAXI J1820+070 during its 2018 outburst, utilizing Insight-HXMT observations. By employing the Hilbert-Huang transform method, we extract the intrinsic quasiperiodic oscillation (QPO) variability, and obtain the corresponding instantaneous amplitude, phase, and frequency functions for each data point. With well-defined phases, we construct QPO waveforms and phase-resolved spectra. By comparing the phase-folded waveform with that obtained from the Fourier method, we find that phase folding on the phase of the QPO fundamental frequency leads to a slight reduction in the contribution of the harmonic component. This suggests that the phase difference between QPO harmonics exhibits time variability. Phase-resolved spectral analysis reveals strong concurrent modulations of the spectral index and flux across the bright hard state. The modulation of the spectral index could potentially be explained by both the corona and jet precession models, with the latter requiring efficient acceleration within the jet. Furthermore, significant modulations in the reflection fraction are detected exclusively during the later stages of the bright hard state. These findings provide support for the geometric origin of LFQPOs and offer valuable insights into the evolution of the accretion geometry during the outburst in MAXI J1820+070.

资助项目NASA's Goddard Space Flight Center - China National Space Administration (CNSA) ; Chinese Academy of Sciences (CAS)[2021YFA0718500] ; National Key Ramp ; D Program of China[U1838201] ; National Key Ramp ; D Program of China[U1838202] ; National Key Ramp ; D Program of China[12173103] ; National Key Ramp ; D Program of China[U2038101] ; National Key Ramp ; D Program of China[U1938103] ; National Natural Science Foundation of China[113111KYSB20190020] ; International Partnership Program of the Chinese Academy of Sciences[57251553] ; Sino-German (CSC-DAAD) Postdoc Scholarship Program
项目资助者NASA's Goddard Space Flight Center - China National Space Administration (CNSA) ; Chinese Academy of Sciences (CAS)[2021YFA0718500] ; National Key Ramp ; D Program of China[U1838201, U1838202, 12173103, U2038101, U1938103] ; National Natural Science Foundation of China[113111KYSB20190020] ; International Partnership Program of the Chinese Academy of Sciences[57251553] ; Sino-German (CSC-DAAD) Postdoc Scholarship Program
语种英语
学科领域天文学
文章类型Article
出版者IOP Publishing Ltd
出版地TEMPLE CIRCUS, TEMPLE WAY, BRISTOL BS1 6BE, ENGLAND
ISSN0004-637X
URL查看原文
WOS记录号WOS:001092131000001
WOS研究方向Astronomy & Astrophysics
WOS类目Astronomy & Astrophysics
关键词[WOS]LENS-THIRRING PRECESSION ; X-RAY BINARIES ; INSIGHT-HXMT OBSERVATIONS ; ACCRETION DISKS ; GX 339-4 ; COMPTON REFLECTION ; BACKGROUND MODEL ; PHYSICAL ORIGIN ; 4U 1636-53 ; GAMMA-RAY
引用统计
被引频次:2[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
版本出版稿
条目标识符http://ir.ynao.ac.cn/handle/114a53/26452
专题高能天体物理研究组
作者单位1.Key Laboratory of Particle Astrophysics, Institute of High Energy Physics, Chinese Academy of Sciences, 100049, Beijing, People's Republic of China; [email protected], [email protected], [email protected];
2.University of Chinese Academy of Sciences, Chinese Academy of Sciences, 100049 Beijing, People's Republic of China;
3.Institut für Astronomie und Astrophysik, Kepler Center for Astro and Particle Physics, Eberhard Karls, Universität, Sand 1, D-72076 Tübingen, Germany;
4.School of Physics and Astronomy, Sun Yat-Sen University, Zhuhai 519082, People's Republic of China;
5.Shandong Key Laboratory of Optical Astronomy and Solar-Terrestrial Environment, School of Space Science and Physics, Institute of Space Sciences, Shandong University, Weihai, Shandong 264209, People's Republic of China;
6.Center for Field Theory and Particle Physics and Department of Physics, Fudan University, 200438 Shanghai, People's Republic of China;
7.College of Science, China Three Gorges University, Yichang 443002, People's Republic of China;
8.CAS Key Laboratory for Research in Galaxies and Cosmology, Department of Astronomy, University of Science and Technology of China, Hefei 230026, People's Republic of China;
9.School of Astronomy and Space Science, University of Science and Technology of China, Hefei 230026, People's Republic of China;
10.Yunnan Observatories, Chinese Academy of Sciences, Kunming 650216, People's Republic of China
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Shui, Qing C.,Zhang, S.,Zhang, Shuang N.,et al. A Phase-resolved View of the Low-frequency Quasiperiodic Oscillations from the Black Hole Binary MAXI J1820+070[J]. ASTROPHYSICAL JOURNAL,2023,957(2).
APA Shui, Qing C..,Zhang, S..,Zhang, Shuang N..,Chen, Yu P..,Kong, Ling D..,...&Yan Z.(2023).A Phase-resolved View of the Low-frequency Quasiperiodic Oscillations from the Black Hole Binary MAXI J1820+070.ASTROPHYSICAL JOURNAL,957(2).
MLA Shui, Qing C.,et al."A Phase-resolved View of the Low-frequency Quasiperiodic Oscillations from the Black Hole Binary MAXI J1820+070".ASTROPHYSICAL JOURNAL 957.2(2023).
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