论文标题

GRS 1915+105的电晕的不断发展的特性:通过可变 - 刺激建模的频谱观点

The evolving properties of the corona of GRS 1915+105: A spectral-timing perspective through variable-Comptonisation modelling

论文作者

García, Federico, Karpouzas, Konstantinos, Méndez, Mariano, Zhang, Liang, Zhang, Yuexin, Belloni, Tomaso, Altamirano, Diego

论文摘要

compton的反向综合光子在电晕中被热电子上划分的逆过程在塑造黑洞(BH)低质量X射线二进制二进制(LMXB)的X射线光谱方面起着基本作用,尤其是在硬式和硬式中间状态下。在这些状态下,这些来源的功率密度光谱通常显示出型C型低频准周期振荡(QPO)。尽管已经提出了几种模型来解释其频率的动力学来源,但只有少数模型预测了QPO的频谱定时辐射特性。在这里,我们根据RXTE档案中可用的大量观测值研究了BH-LMXB GRS 1915+105的电晕的物理和几何特性。我们使用最近开发的频谱序列组合模型,同时拟合398个观测值中型-C QPO的能量依赖性分数RMS振幅和相位lag光谱。为此,我们包括从拟合组合模型到相应的时间平均光谱收集的光谱信息。我们分析了电晕的物理和几何特性对源源频率和光谱状态的依赖性,后者以硬度比为特征。我们发现电晕大小,温度和反馈的演变趋势(撞击回到圆盘上的电晕光子的一部分)的演变趋势持续了大约15〜年。通过将我们的观察结果与在15 GHz处的源同时进行无线电监视相关联,我们提出了一种场景,其中圆盘 - 孔子相互作用与该来源中无线电飞机的发射机制相关联。

The inverse Compton process by which soft photons are up-scattered by hot electrons in a corona plays a fundamental role in shaping the X-ray spectra of black-hole (BH) low-mass X-ray binaries (LMXBs), particularly in the hard and hard-intermediate states. In these states, the power-density spectra of these sources typically show Type-C low-frequency quasi-periodic oscillations (QPOs). Although several models have been proposed to explain the dynamical origin of their frequency, only a few of those models predict the spectral-timing radiative properties of the QPOs. Here we study the physical and geometrical properties of the corona of the BH-LMXB GRS 1915+105 based on a large sample of observations available in the RXTE archive. We use a recently-developed spectral-timing Comptonisation model to fit simultaneously the energy-dependent fractional rms amplitude and phase-lag spectra of the Type-C QPO in 398 observations. For this, we include spectral information gathered from fitting a Comptonisation model to the corresponding time-averaged spectra. We analyse the dependence of the physical and geometrical properties of the corona upon the QPO frequency and spectral state of the source, the latter characterised by the hardness ratio. We find consistent trends in the evolution of the corona size, temperature, and feedback (the fraction of the corona photons that impinge back onto the disc) that persist for roughly 15~years. By correlating our observations with simultaneous radio-monitoring of the source at 15 GHz, we propose a scenario in which the disc-corona interactions connect with the launching mechanism of the radio jet in this source.

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