论文标题

X射线光谱的新模拟和具有各种几何配置的积聚盘电晕系统的极化I.模型描述

New simulations of the X-ray spectra and polarizations of accretion-disc corona systems with various geometrical configurations I. Model Description

论文作者

Yang, Xiao-lin, Wang, Jian-cheng, Yang, Chu-yuan

论文摘要

从各种积聚系统中发出的能量X射线辐射被广泛认为是由热电晕中的Comptonization产生的。电晕及其与圆盘的相互作用在系统的演变中起着至关重要的作用,并且可能导致许多观察到的特征。但是,电晕的许多固有特性仍然很少了解,尤其是对于几何构型。传统的光谱拟合方法不足以区分各种配置。在本文中,我们意图通过对X射线辐射的极化特性进行建模来研究可能的配置。电晕的几何形状包括平板,球体和圆柱体。模拟是通过公开可用的代码柠檬实施的,该代码可以轻松处理两极分化的辐射转移和不同的电子分布。结果清楚地表明,观察到的极化取决于电晕的几何形状。平板状的电晕产生最高的极化度,以下是圆柱体和球体。有趣的是,极化度首先逐渐增加,然后随着光子能量的增加而降低。对于平板几何,存在一个零点,极化消失,极化角的旋转价格为$ 90^\ circ $。这些结果可能会通过即将到来的两极分化X射线观察(例如$ ixpe $和$ extp $)的任务来验证这些结果。

Energetic X-ray radiations emitted from various accretion systems are widely considered to be produced by Comptonization in the hot corona. The corona and its interaction with the disc play an essential role in the evolution of the system and are potentially responsible for many observed features. However many intrinsic properties of the corona are still poorly understood, especially for the geometrical configurations. The traditional spectral fitting method is not powerful enough to distinguish various configurations. In this paper we intent to investigate the possible configurations by modeling the polarization properties of X-ray radiations. The geometries of the corona include the slab, sphere and cylinder. The simulations are implemented through the publicly available code, LEMON, which can deal with the polarized radiative transfer and different electron distributions readily. The results demonstrate clearly that the observed polarizations are dependent on the geometry of the corona heavily. The slab-like corona produces the highest polarization degrees, the following are the cylinder and sphere. One of the interesting things is that the polarization degrees first increase gradually and then decrease with the increase of photon energy. For slab geometry there exists a zero point where the polarization vanishes and the polarization angle rotates for $90^\circ$. These results may potentially be verified by the upcoming missions for polarized X-ray observations, such as $IXPE$ and $eXTP$.

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