Back to Search Start Over

Insight-HXMT observations of the New Black Hole Candidate MAXI J1535-571: timing analysis

Authors :
Wei Zhang
Yi-Qiao Dong
Cheng-Cheng Guo
X. L. Cao
Fu-Guo Xie
Xian Hou
Yupeng Xu
Jiancheng Wang
Xian Li
Jundan Nie
Y. G. Li
Yunchao Liu
Z. Chang
Yujuan Liu
C. L. Zou
Luhua Jiang
Y. J. Yang
W. C. Jiang
C. Z. Liu
Wei Cui
Mao-Shun Li
J. K. Deng
J. F. Zhou
Tianmeng Zhang
B. B. Wu
Jia Huo
X. H. Ma
Ju Guan
J. F. Ji
Xiaobo Li
ShaoZhen Liu
Tianran Chen
Shan-Shan Weng
Gang Chen
Yu-Dong Gu
Lian Tao
Y. X. Zhu
Li-Ming Song
Ming-Yu Ge
Xiao-Jing Liu
Bing Li
Guobao Zhang
Xue-Feng Lu
H. W. Liu
Shuinai Zhang
W. Z. Zhang
Yuan-Yuan Du
Z. L. Zhang
Y. S. Wang
Wenxiong Li
GuoQing Liu
Y. H. Tan
L. Chen
Wenfei Yu
Hsiang-Kuang Chang
S. N. Zhang
Chuan-Peng Zhang
Ya Fang Huang
Y. Nang
C. L. Zhang
Limei Yan
S. Yang
G. H. Gao
Wan-Chang Zhang
Y. P. Chen
Can Güngör
Y. B. Chen
Ti-Pei Li
M. Wu
Y. Zhang
G. F. Wang
Y. L. Tuo
J. Y. Liao
H. M. Zhang
J. W. Yang
Y. F. Zhang
Bo Lu
Xuchao Zhao
M. X. Fu
Jia Zhang
C. K. Li
H. Wang
Wei Hu
Z. Zhang
X. X. Li
Weiguang Cui
Qing-He Zhang
Zhuo Li
Qingcui Bu
Shu-Mei Jia
W. S. Wang
Shaolin Xiong
HongSheng Zhao
H. Xu
Ge Ou
Y. J. Zhang
Z. W. Li
Da-Wei Han
H. Gao
S. J. Zheng
Tao Luo
X. H. Liang
Min Gao
J. Zhao
J. L. Qu
Liang Sun
Albert K. H. Kong
Aimei Zhang
Gang Li
N. Sai
Yu-Xuan Zhu
Bin Meng
Fangjun Lu
Y. J. Jin
J. Jin
R. C. Shang
WenHui Tao
G. C. Xiao
F. Zhang
XiangYang Wen
Publication Year :
2018
Publisher :
arXiv, 2018.

Abstract

We present the X-ray timing results of the new black hole candidate (BHC) MAXI J1535-571 during its 2017 outburst from Hard X-ray Modulation Telescope (\emph{Insight}-HXMT) observations taken from 2017 September 6 to 23. Following the definitions given by \citet{Belloni2010}, we find that the source exhibits state transitions from Low/Hard state (LHS) to Hard Intermediate state (HIMS) and eventually to Soft Intermediate state (SIMS). Quasi-periodic oscillations (QPOs) are found in the intermediate states, which suggest different types of QPOs. With the large effective area of \emph{Insight}-HXMT at high energies, we are able to present the energy dependence of the QPO amplitude and centroid frequency up to 100 keV which is rarely explored by previous satellites. We also find that the phase lag at the type-C QPOs centroid frequency is negative (soft lags) and strongly correlated with the centroid frequency. By assuming a geometrical origin of type-C QPOs, the source is consistent with being a high inclination system.<br />Comment: 12 pages, 11 figures, Sumbitted to ApJ

Details

Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....aca2fedc9bfd2bf098267ea3349452ef
Full Text :
https://doi.org/10.48550/arxiv.1808.05318