论文标题

AGN中的紫外/光磁盘热回响:一项深入研究,并进行了分析处方时间滞后光谱

UV/optical disk thermal reverberation in AGN: an in-depth study with an analytic prescription for the time-lag spectra

论文作者

Kammoun, E. S., Dovciak, M., Papadakis, I. E., Caballero-Garcia, M. D., Karas, V.

论文摘要

几个活跃的银河核在紫外线/光学范围内显示出相关的变化,在更长的波长下,时间延迟增加。 X射线的热重新处理启发了积聚磁盘作为可行的解释。在这种情况下,可变的X射线通量照射积聚磁盘在X射线中部分反射,并部分吸收,热化和重新装饰,并在更长的波长下通过积聚磁盘延迟一些延迟。我们研究了这种情况,假设X射线点状源照亮了旋转黑洞周围的标准Novikov-Thorne积聚磁盘。我们考虑所有特殊和一般的相对论效应,以确定磁盘上的入射X射线通量以及从源到磁盘和观察者传播的光。我们还考虑了磁盘电离,计算磁盘反射通量。我们研究了磁盘响应函数和时间滞后对各种物理参数的依赖性,例如黑洞质量和自旋,X射线电晕高度,光度和光子指数,增生率,倾斜度以及内部/外盘半径。我们发现,在估计磁盘响应时考虑相对论效应和磁盘电离很重要。我们还发现X射线光度和磁盘响应之间具有很强的非线性。我们提出了对波长的时间段依赖性的分析函数,该函数可用于拟合观察到的时置光谱。我们还估计了反混响信号相对于总通量的分数,我们建议可能解释缺乏少数来源中缺乏X射线 - 硫酸群/光学相关变化。

Several active galactic nuclei show correlated variations in the ultraviolet/optical range, with time delays increasing at longer wavelengths. Thermal reprocessing of the X-rays illuminating the accretion disk has been proposed as a viable explanation. In this scenario, the variable X-ray flux irradiating the accretion disk is partially reflected in X-rays, and partially absorbed, thermalized and re-emitted with some delay by the accretion disk at longer wavelengths. We investigate this scenario assuming an X-ray point-like source illuminating a standard Novikov-Thorne accretion disk, around a rotating black hole. We consider all special and general relativistic effects to determine the incident X-ray flux on the disk and in propagating light from the source to the disk and to the observer. We also compute the disk reflection flux taking into consideration the disk ionization. We investigate the dependence of the disk response function and time lags on various physical parameters, such as black hole mass and spin, X-ray corona height, luminosity, and photon index, accretion rate, inclination, and inner/outer disk radii. We found it is important to consider relativistic effects and the disk ionization in estimating the disk response. We also found a strong non-linearity between the X-ray luminosity and the disk response. We present an analytic function for the time-lags dependence on wavelength, which can be used to fit observed time-lag spectra. We also estimate the fraction of the reverberation signal with respect to the total flux and we suggest possible explanation for the lack of X-ray-ultraviolet/optical correlated variations in a few sources.

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