论文标题

电离和电子密度梯度在X射线反射光谱测量中的影响

Impact of ionization and electron density gradients in X-ray reflection spectroscopy measurements

论文作者

Mall, Gitika, Tripathi, Ashutosh, Abdikamalov, Askar B., Bambi, Cosimo

论文摘要

目前用于分析黑洞反射光谱的模型通常假设具有恒定电离和电子密度的磁盘。但是,关于这些假设对来源性质估计的影响,尤其是当拟合表明在积聚磁盘内部非常陡峭的发射率特征时,存在一些争论。 In this work, we re-analyze a selected set of high-quality NuSTAR and Suzaku data of Galactic black holes and we fit the reflection component with three different models: RELXILL_NK, in which the ionization parameter and the electron density are constant, RELXILLION_NK, where the electron density is still constant but the ionization profile is described by a power law, and RELXILLDGRAD_NK, where the electron密度轮廓由功率定律描述,电离曲线是根据电子密度和发射率自兼而有的。尽管Relxillion_nk可能会提供略微拟合的拟合,但我们在三个模型之间的源属性估计中没有发现任何实质性差异。我们的结论是,在大多数情况下,具有恒定电子密度和电离参数的模型可能足以符合当前可用的X射线数据。

The models currently used for the analysis of the reflection spectra of black holes usually assume a disk with constant ionization and electron density. However, there is some debate on the impact of these assumptions on the estimate of the properties of the sources, in particular when the fits suggest very steep emissivity profiles in the inner part of the accretion disk. In this work, we re-analyze a selected set of high-quality NuSTAR and Suzaku data of Galactic black holes and we fit the reflection component with three different models: RELXILL_NK, in which the ionization parameter and the electron density are constant, RELXILLION_NK, where the electron density is still constant but the ionization profile is described by a power law, and RELXILLDGRAD_NK, where the electron density profile is described by a power law and the ionization profile is calculated self-consistently from the electron density and the emissivity. While RELXILLION_NK may provide slightly better fits, we do not find any substantial difference in the estimate of the properties of the sources among the three models. Our conclusion is that models with constant electron density and ionization parameter are probably sufficient, in most cases, to fit the currently available X-ray data of accreting black holes.

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