关于赛弗1星系中X射线日冕的特性

Indrani Pal, Anju A., H. Sreehari, Gitika Rameshan, C. S. Stalin, Claudio Ricci and S. Marchesi
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引用次数: 0

摘要

我们对附近112个明亮的塞弗特1型活动星系核样本进行了统一和系统的分析,这些样本是核光谱望远镜阵列在2013年8月至2022年5月期间观测到的。这项分析的主要目的是研究赛弗1星系X射线日冕的性质。通过对NuSTAR光谱拟合物理模型,我们可以约束样本中73个源的高能截止(Ecut)。为了估算 112 个样本源的日冕温度(kTe),我们使用康普顿化模型来拟合它们的光谱。我们可以确定 42 个光源的 kTe。我们发现 Ecut 和 kTe 之间有很强的正相关性,大多数光源都高于经验近似值 Ecut = 2-3 kTe。我们研究了通过物理模型拟合观测到的光谱得到的日冕的各种特性之间可能存在的相关性,以及日冕的各种参数与源的物理特性(如爱丁顿比和黑洞质量)之间可能存在的相关性。我们发现:(a) Ecut 与光子指数之间存在很强的相关性;(b) kTe 与光学深度之间存在显著的负相关。通过对日冕参数与爱丁顿比和黑洞质量的相关性进行详细的统计分析,我们发现两者之间没有明显的相关性。本研究中观察到的相关性表明,需要光学上较薄的日冕来维持光谱较陡的较热日冕。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the Properties of X-Ray Corona in Seyfert 1 Galaxies
We carried out a uniform and systematic analysis of a sample of 112 nearby bright Seyfert 1 type active galactic nuclei, the observations of which were carried out by the Nuclear Spectroscopic Telescope Array between 2013 August and 2022 May. The main goal of this analysis is to investigate the nature of the X-ray corona in Seyfert 1 galaxies. By fitting a physical model to the NuSTAR spectra, we could constrain the high-energy cutoff (Ecut) for 73 sources in our sample. To estimate the temperature of the corona (kTe) in our sample of 112 sources, we used the Comptonization model to fit their spectra. We could constrain kTe in 42 sources. We found a strong positive correlation between Ecut and kTe, with most of the sources lying above the empirical approximation of Ecut = 2−3 kTe. We investigated for possible correlations between various properties of the corona obtained from physical model fits to the observed spectra and between various coronal parameters and physical properties of the sources such as Eddington ratio and black hole mass. We found (a) a strong correlation between Ecut and the photon index and (b) a significant negative correlation between kTe and the optical depth. From detailed statistical analysis of the correlation of coronal parameters with the Eddington ratio and black hole mass, we found no significant correlation. The correlations observed in this study indicate that an optically thin corona is needed to sustain a hotter corona with a steeper spectrum.
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