AstroSat对IGR J17091−3624和GRS 1915 + 105的观测:解码“心跳状态”中的“脉冲”

T. Katoch, Blessy E. Baby, A. Nandi, V. K. Agrawal, H. M. Antia, K. Mukerjee
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引用次数: 2

摘要

IGR J17091—3624是一个瞬态星系黑洞,具有独特的准周期变化,称为“心跳”,类似于在GRS 1915+105中观测到的黑洞。在本文中,我们报告了$\sim 125$ ks \textit{AstroSat}在2016年爆发期间对该源的观测结果。首次在该源的几个时间段内检测到双峰QPO (DPQ),两个峰值之间的差异为$\delta f ~\sim12$ mHz。采用静态功率谱和动态功率谱对DPQ的硬度比进行了研究。此外,低频率(25- 48 mHz)“心跳”单峰QPO (SPQ)在不同的时间间隔随谐波($50-95$ mHz)被观察到。利用\textit{SXT}和\textit{LAXPC}获得的$0.7-23$ keV范围内的宽带光谱可以很好地与热调和和多色圆盘成分模型相结合。在\textit{AstroSat}观测期间,该源在\textit{Swift/XRT}观测下处于软中间状态(SIMS)。我们对IGR J17091—3624和GRS 1915+105中的“心跳”状态变异性进行了比较研究。虽然光谱参数($\Gamma\sim2.1-2.4$和$T_\mathrm{max}\sim0.6-0.8$ keV)在宽能带上保持相似,但时序特性有显著差异。采用简单的相位分辨光谱进一步研究了SPQ和DPQ片段的光谱特性,发现两者没有显著差异。根据模型参数,我们得到GRS 1915+105与IGR J17091—3624的最大质量吸积比为$\sim25:1$。我们讨论了我们的发现的意义,并评论了这些外来变异的物理起源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
AstroSat view of IGR J17091−3624 and GRS 1915 + 105: decoding the ‘pulse’ in the ‘Heartbeat State’
IGR J17091--3624 is a transient galactic black hole which has a distinct quasi-periodic variability known as `heartbeat', similar to the one observed in GRS 1915+105. In this paper, we report the results of $\sim 125$ ks \textit{AstroSat} observations of this source during the 2016 outburst. For the first time a double peaked QPO (DPQ) is detected in a few time segments of this source with a difference of $\delta f ~\sim12$ mHz between the two peaks. The nature of the DPQ was studied based on hardness ratios and using the static as well as the dynamic power spectrum. Additionally, a low frequency (25--48 mHz) `heartbeat' single peak QPO (SPQ) was observed at different intervals of time along with harmonics ($50-95$ mHz). Broadband spectra in the range $0.7-23$ keV, obtained with \textit{SXT} and \textit{LAXPC}, could be fitted well with combination of a thermal Comptonisation and a multicolour disc component model. During \textit{AstroSat} observation, the source was in the Soft-Intermediate State (SIMS) as observed with \textit{Swift/XRT}. We present a comparative study of the `heartbeat' state variability in IGR J17091--3624 with GRS 1915+105. Significant difference in the timing properties is observed although spectral parameters ($\Gamma\sim2.1-2.4$ and $T_\mathrm{max}\sim0.6-0.8$ keV) in the broad energy band remain similar. Spectral properties of segments exhibiting SPQ and DPQ are further studied using simple phase resolved spectroscopy which does not show a significant difference. Based on the model parameters, we obtain the maximum ratio of mass accretion rate in GRS 1915+105 to that in IGR J17091--3624 as $\sim25:1$. We discuss the implications of our findings and comment on the physical origin of these exotic variabilities.
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