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首页> 外文期刊>The Astrophysical journal >A MONTE CARLO MARKOV CHAIN BASED INVESTIGATION OF BLACK HOLE SPIN IN THE ACTIVE GALAXY NGC?3783
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A MONTE CARLO MARKOV CHAIN BASED INVESTIGATION OF BLACK HOLE SPIN IN THE ACTIVE GALAXY NGC?3783

机译:基于蒙特卡洛马尔可夫链的主动银河系NGC中黑洞旋转的研究?3783

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摘要

The analysis of relativistically broadened X-ray spectral features from the inner accretion disk provides a powerful tool for measuring the spin of supermassive black holes in active galactic nuclei (AGNs). However, AGN spectra are often complex and careful analysis employing appropriate and self-consistent models is required if one has to obtain robust results. In this paper, we revisit the deep 2009 July Suzaku observation of the Seyfert galaxy NGC?3783 in order to study in a rigorous manner the robustness of the inferred black hole spin parameter. Using Monte Carlo Markov chain techniques, we identify a (partial) modeling degeneracy between the iron abundance of the disk and the black hole spin parameter. We show that the data for NGC?3783 strongly require both supersolar iron abundance (Z Fe = 2-4 Z ☉) and a rapidly spinning black hole (a 0.89). We discuss various astrophysical considerations that can affect the measured abundance. We note that, while the abundance enhancement inferred in NGC?3783 is modest, the X-ray analysis of some other objects has found extreme iron abundances. We introduce the hypothesis that the radiative levitation of iron ions in the innermost regions of radiation-dominated AGN disks can enhance the photospheric abundance of iron. We show that radiative levitation is a plausible mechanism in the very inner regions of high accretion rate AGN disks.
机译:从内吸积盘的相对论性拓宽的X射线光谱特征的分析提供了一个强大的工具,可用于测量活动星系核(AGN)中超大质量黑洞的自旋。但是,AGN谱通常很复杂,如果必须获得可靠的结果,则需要使用适当且自洽的模型进行仔细的分析。在本文中,我们将对塞弗特星系NGC?3783于2009年7月进行的朱雀深处观测进行深入研究,以严格研究推断黑洞自旋参数的鲁棒性。使用蒙特卡洛马尔可夫链技术,我们确定了磁盘铁丰度和黑洞自旋参数之间的(部分)建模退化。我们显示NGC?3783的数据强烈要求既有超太阳铁丰度(Z Fe = 2-4 Z☉)又有一个快速旋转的黑洞(a> 0.89)。我们讨论了可能影响测量的丰度的各种天体物理学考虑。我们注意到,尽管在NGC?3783中推断出的丰度增强是适度的,但对其他一些物体的X射线分析却发现了极高的铁丰度。我们介绍了这样一个假说:在辐射为主的AGN盘的最内部区域中,铁离子的辐射悬浮会增强铁的光球丰度。我们表明,辐射悬浮是在高吸积率AGN磁盘非常内部区域的一种合理的机制。

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