论文标题

一种新颖的“光谱比率模型拟合”,以解决复杂的AGN X射线光谱变化

A novel "spectral-ratio model fitting" to resolve complicated AGN X-ray spectral variations

论文作者

Midooka, Takuya, Mizumoto, Misaki, Ebisawa, Ken

论文摘要

AGNS的当代辐射磁性水力动力学模拟预测了热吸积盘风的存在,该磁盘的存在远离中央区域并变成气体团块。这些内风和外部团块实际上可以分别视为超快流出(UFO)和块状吸收剂。我们可以将此图片称为“热内和块状外风模型”。从观察上讲,由于复杂的光谱变化,对不明飞行物和块状吸收剂的起源进行约束是一项挑战。我们开发了一种新的方法,即“光谱比率模型拟合”,以解决块状吸收剂和其他光谱成分的参数退化。在这种方法中,视线中吸收器的参数是从部分吸收的光谱与非吸收量的估计的估计的。我们将此方法应用于窄线Seyfert 1 Galaxy IRAS 13224-3809,XMM-Newton在2016年以1.5 ms的速度观察到,在那里源显示出极端的光谱变异性和复杂的吸收特征。结果,我们发现软光谱变化主要是通过轻度离子块状吸收剂的覆盖部分的变化来解释的,并且这些吸收剂的流动速度与UFO(〜0.2-0.3 c)相当的高速速度流出。该结果意味着块状吸收剂的形成和UFO具有相同的起源,支持“热内和块状外风模型”。

Contemporary radiation-magnetohydrodynamic simulation of the AGNs predicts presence of the hot and strong accretion disk wind, which gets unstable far from the central region and turns into gas clumps. These inner-wind and outer clumps may be actually observed as the ultrafast outflows (UFOs) and the clumpy absorbers, respectively. We may call this picture as the "hot inner and clumpy outer wind model". Observationally, it is challenging to place constraints on the origin of the UFOs and clumpy absorbers due to complicated spectral variations. We developed a novel method, "spectral-ratio model fitting", to resolve parameter degeneracy of the clumpy absorbers and other spectral components. In this method, the parameters of the absorber in the line of sight are estimated from the ratio of the partially absorbed spectrum to the non-absorbed one. We applied this method to the narrow-line Seyfert 1 galaxy IRAS 13224-3809 observed by XMM-Newton in 2016 for 1.5 Ms, where the source showed extreme spectral variability and complex absorption features. As a result, we found that the soft spectral variation is mostly explained by a change of the covering fraction of the mildly-ionized clumpy absorbers, and that these absorbers are outflowing with such a high velocity that is comparable to that of the UFO (~ 0.2-0.3 c). This result implies that the formation of the clumpy absorbers and the UFO shares the same origin, supporting the "hot inner and clumpy outer wind model".

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