论文标题

返回辐射对黑洞反射光谱分析的影响

Impact of the returning radiation on the analysis of the reflection spectra of black holes

论文作者

Riaz, Shafqat, Szanecki, Michal, Niedzwiecki, Andrzej, Ayzenberg, Dimitry, Bambi, Cosimo

论文摘要

由于紧凑型物体(返回的辐射)附近的强光弯曲(返回的辐射),黑洞的几何薄和光学厚的吸积盘的表面发出了一小部分电磁辐射。尽管这种辐射清楚地影响了观察到的源频谱,但在理论模型中通常会忽略它。在本文中,我们研究了返回辐射对相对论反射光谱的影响。假设磁盘中的中性材料,我们估算了系统的系统不确定性,当我们使用忽略返回辐射的理论模型拟合数据时,对系统的性质进行了测量。我们更好的模拟表明,对于低视角,磁盘和黑洞旋转参数的倾斜角往往被高估,而对于高视角,没有观察到明显的偏见。磁盘的铁丰度永远不会被高估。在最极端的情况下(特别是对于最大旋转的黑洞),返回的辐射使径向发射率超出了几个重力半径。在这种情况下,它还可以通过调整忽略返回辐射的模型的参数来产生残差。这可能是解释未来X射线任务(例如雅典娜)数据的重要问题。当我们使用Nustar模拟一些观察结果并将数据拟合到10 keV以上时,我们发现一些对较好模拟有效的结论不再是正确的(例如,我们可以获得高铁丰富度)。

A fraction of the electromagnetic radiation emitted from the surface of a geometrically thin and optically thick accretion disk of a black hole returns to the disk because of the strong light bending in the vicinity of the compact object (returning radiation). While such radiation clearly affects the observed spectrum of the source, it is often neglected in theoretical models. In the present paper, we study the impact of the returning radiation on relativistic reflection spectra. Assuming neutral material in the disk, we estimate the systematic uncertainties on the measurement of the properties of the system when we fit the data with a theoretical model that neglects the returning radiation. Our NICER simulations show that the inclination angle of the disk and the black hole spin parameter tend to be overestimated for low viewing angles, while no clear bias is observed for high viewing angles. The iron abundance of the disk is never overestimated. In the most extreme cases (in particular, for maximally rotating black holes) the returning radiation flattens the radial emissivity beyond a few gravitational radii. In such cases, it also produces residuals that cannot be compensated by adjusting the parameters of models neglecting the returning radiation. This may be an important issue for interpretation of data from future X-ray missions (e.g. Athena). When we simulate some observations with NuSTAR and we fit data above 10 keV, we find that some conclusions valid for the NICER simulations are not true any longer (e.g., we can get a high iron abundance).

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