论文标题

来自黑洞积聚盘的反射X射线发射的光谱和极化特性

Spectral and polarization properties of reflected X-ray emission from black hole accretion discs

论文作者

Podgorný, Jakub, Dovčiak, Michal, Marin, Frédéric, Goosmann, René, Różańska, Agata

论文摘要

X射线极化任务计划了这十年,将显着增强我们对紧凑型积聚来源的了解。对活性银河核(AGN)或X射线二元系统(XRB)的X射线极化信号的观察将带来新的手段,以研究这些物体中的内部积聚流,这些物体与当前使用的光谱和时序技术一起,将帮助US可以帮助US更好地确定它们的倾向,倾斜度,方向,型号,尺寸和黑色孔的尺寸,以及均匀的型号,以及良好的尺寸,以及良好的且既均匀均可享受。在这项工作中,我们在黑洞积聚光盘的全球两极化模型中呈现了一个却缺失的作品。我们使用(1)使用(1)使用辐射传输代码泰坦(Titan)在局部共同移动框架中计算出从光盘中的反射X射线发射,以获得盘的电离结构,以及(2)蒙特卡洛代码stokes,其中包含吸收,重新发射和综合散射的物理学,以产生完整的光极偏射输出。对于入射的初级幂律辐射的一组光子指标,圆盘电离参数,入射和发射角度,我们介绍了最终的Stokes参数I,Q和U,对于入射冠状X射线光子的三个独立极化状态,具有足够的能量分辨率,以允许对频谱和极性属性进行清晰的讨论和极化性能。我们表明,光谱成分与良好的文献预测匹配。极化程度和角度与先前在反射模型中出现的分析近似一致,我们证明了偏振反射的X射线发射可以在2-12 KEV频段中局部很大。

X-ray polarimetric missions planned for this decade will significantly enhance our knowledge of compact accreting sources. Observations of the X-ray polarization signal from active galactic nuclei (AGNs) or X-ray binary systems (XRBs) will bring new means to study inner accretion flow in these objects that, together with currently used spectroscopic and timing techniques, will help us to determine better their properties, such as their inclination, orientation, shape, and size of their corona as well as the black hole spin. In this work, we present a yet missing piece in the global polarization models of black hole accretion discs. We compute the reflected X-ray emission from the disc in a local co-moving frame using (1) the radiative transfer code TITAN to obtain the ionization structure of the disc and (2) the Monte Carlo code STOKES that incorporates the physics of absorption, re-emission, and Compton scattering to produce a complete spectropolarimetric output. We present the final Stokes parameters I, Q, and U for a set of photon-indices of the incident primary power-law radiation, the disc ionization parameters, incident and emission angles, for three independent polarization states of the incident coronal X-ray photons with a sufficient resolution in energy to allow for sharp discussion of spectral and polarization properties. We show that the spectral component matches well literature predictions. The polarization degree and angle are in agreement with analytical approximations previously appearing in reflection models and we demonstrate that the polarized reflected X-ray emission can be, locally, quite large in the 2-12 keV band.

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