论文标题

X射线照明的积聚盘和类星体微透镜大小

X-ray illuminated accretion discs and quasar microlensing disc sizes

论文作者

Papadakis, I. E., Dovciak, M., Kammoun, E.

论文摘要

我们研究了活跃银河核(AGN)中的半光半径与黑洞质量以及光度与黑洞质量关系时,当光盘被X射线电晕照亮时。我们使用了Kynsed,这是一种最近开发的光谱模型,用于研究AGN中的宽带光谱分布。我们认为基于Novikov-Thorne温度径向轮廓的未鲜艳的Novikov-Thorne圆盘和X射线照明盘。我们还考虑了温度曲线通过颜色校正因子修饰的情况。我们假设X射线光度等于散布在过渡半径以下的光盘上的增生功率。 X射线照明半径半径的半径可能比标准盘的半径大约三到四倍,即使对于非旋转黑洞,吸收的X射线X射线起到了次要能量来源,从而升高了盘温度,即使是非旋转黑洞的半径。非释放的椎间盘与观测值一致,但仅在2.5含量水平上。另一方面,X射线照明盘可以解释AGN中的半光度半径黑色孔质量以及AGN中的光度黑色孔质量,以用于广泛的物理参数。此外,我们表明,重力镜头类星体观察到的X射线光度与加热盘的X射线光度完全一致。 X射线盘照明是多年前提出的,以解释AGN X射线光谱中通常观察到的各种特征。最近,我们表明积聚光盘的X射线照明也可以解释AGN中观察到的紫外线/光学时间段,而在这项工作中,我们表明相同的模型也可以解释类星体微透镜盘大小问题。这些结果支持AGN中光盘X射线照明的假设。

We study the half-light radius versus black hole mass as well as the luminosity versus black hole mass relations in active galactic nuclei (AGN) when the disc is illuminated by the X-ray corona. We used KYNSED, a recently developed spectral model for studying broadband spectral energy distribution in AGN. We considered non-illuminated Novikov-Thorne discs and X-ray illuminated discs based on a Novikov-Thorne temperature radial profile. We also considered the case where the temperature profile is modified by a colour-correction factor. We assumed that the X-ray luminosity is equal to the accretion power that is dissipated to the disc below a transition radius. The half-light radius of X-ray illuminated radii can be up to some three to four times greater than the radius of a standard disc, even for a non-spinning black hole, due to the fact that the absorbed X-rays act as a secondary source of energy, increasing the disc temperature. Non-illuminated discs are consistent with observations, but only at the 2.5sigma level. On the other hand, X-ray illuminated discs can explain both the half-light radius-black hole mass as well as the luminosity-black hole mass relation in AGN, for a wide range of physical parameters. In addition, we show that the observed X-ray luminosity of the gravitationally lensed quasars is fully consistent with the X-ray luminosity that is necessary for heating the disc. X-ray disc illumination was proposed many years ago to explain various features that are commonly observed in the X-ray spectra of AGN. Recently, we showed that X-ray illumination of accretion disc can also explain the observed UV/optical time-lags in AGN, while in this work, we show that the same model can also account for the quasar micro-lensing disc size problem. These results support the hypothesis of the disc X-ray illumination in AGN.

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