探索 RBS 1124 中软过量的高密度反射模型

IF 4.7 3区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS Monthly Notices of the Royal Astronomical Society Pub Date : 2024-09-06 DOI:10.1093/mnras/stae2104
A Madathil-Pottayil, D J Walton, Javier García, Jon Miller, Luigi C Gallo, C Ricci, Mark T Reynolds, D Stern, T Dauser, Jiachen Jiang, William Alston, A C Fabian, M J Hardcastle, Peter Kosec, Emanuele Nardini, Christopher S Reynolds
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引用次数: 0

摘要

裸 "活动星系核(AGN)是 1 型 AGN 的一个亚类,几乎没有或根本没有本征吸收。它们提供了一个不受遮挡的 AGN 中心区域视角,因此是研究来自吸积盘最内部区域的相对论反射特征的理想目标。我们利用 XMM-Newton 和 NuSTAR 获得的新的协调高信噪比观测数据,对本地宇宙中最亮的裸 AGN 之一 RBS 1124(z = 0.208)进行了详细的宽带光谱分析(0.3 - 70 keV)。该光源呈现出幂律连续谱(Γ ∼ 1.8),同时还有低于 2 keV 的软过量、弱中性铁线和高能量(∼ 30 keV)下的曲率。当允许吸积盘的密度为 log(ne/cm-3) ≳19.2时,相对论反射模型可以很好地拟合包括软过量和高能连续波在内的宽带光谱。因此,我们的分析表明,当考虑到高密度效应时,相对论反射仍然是软过量的一个可行解释。
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Exploring the high-density reflection model for the soft excess in RBS 1124
‘Bare’ active galactic nuclei (AGN) are a subclass of Type 1 AGN that show little or no intrinsic absorption. They offer an unobscured view of the central regions of the AGN and therefore serve as ideal targets to study the relativistic reflection features originating from the innermost regions of the accretion disc. We present a detailed broadband spectral analysis (0.3 – 70 keV) of one of the most luminous bare AGN in the local universe, RBS 1124 (z = 0.208) using a new, co-ordinated high signal-to-noise observation obtained by XMM-Newton and NuSTAR. The source exhibits a power-law continuum with Γ ∼ 1.8 along with a soft excess below 2 keV, a weak neutral iron line and curvature at high energies (∼30 keV). The broadband spectrum, including the soft excess and the high-energy continuum, is well fit by the relativistic reflection model when the accretion disc is allowed to have densities of log(ne/cm−3) ≳ 19.2. Our analysis therefore suggests that when high-density effects are considered, relativistic reflection remains a viable explanation for the soft excess.
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来源期刊
CiteScore
9.10
自引率
37.50%
发文量
3198
审稿时长
3 months
期刊介绍: Monthly Notices of the Royal Astronomical Society is one of the world''s leading primary research journals in astronomy and astrophysics, as well as one of the longest established. It publishes the results of original research in positional and dynamical astronomy, astrophysics, radio astronomy, cosmology, space research and the design of astronomical instruments.
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