论文标题

NGC 5548中未识别的软X射线排放功能的检测

Detection of an Unidentified Soft X-ray Emission Feature in NGC 5548

论文作者

Gu, Liyi, Mao, Junjie, Kaastra, Jelle S., Mehdipour, Missagh, Pinto, Ciro, Grafton-Waters, Sam, Bianchi, Stefano, Landt, Hermine, Branduardi-Raymont, Graziella, Costantini, Elisa, Ebrero, Jacobo, Petrucci, Pierre-Olivier, Behar, Ehud, di Gesu, Laura, De Marco, Barbara, Matt, Giorgio, Mitchell, Jake A. J., Peretz, Uria, Ursini, Francesco, Ward, Martin

论文摘要

NGC〜5548是X射线明亮的Seyfert 1活动星系。它在软X射线带中表现出多种光谱特征,包括尤其是由AGN流出的广泛电离状态的吸收,柱密度高达1E27 /m^2,并且速度高达每秒几千公里。已知的发射特征与光电离X射线狭窄和宽发射线模型大致一致。我们使用1.1 MS XMM-Newton和0.9 MS Chandra Grating观测值NGC 5548进行了X射线光谱研究报告。目的是搜索和表征除了已经以高精度建模的已知主要光谱成分之外的任何潜在光谱特征。我们检测到18.4 Angstrom(RESTFRAME中的18.1 Angstrom)的弱未识别的过剩排放功能。考虑到其他地方效果的外观,该功能在> 5的Sigma统计显着性上可见。没有已知的工具问题,原子质过渡和天体物理效应可以解释这一过多。观察到的可能特征的强度似乎随着源的硬度比的及时而抗可相反。但是,可变性可能不是固有的,它可能是由于流出的时间变化而引起的。有趣的可能性是在相同流出或近距离环境中部分电离流出和中性层之间的电荷交换中的线排放。不能完全排除其他可能性,例如从高空流出速度的高度离子组件中排放。

NGC~5548 is an X-ray bright Seyfert 1 active galaxy. It exhibits a variety of spectroscopic features in the soft X-ray band, including in particular the absorption by the AGN outflows of a broad range of ionization states, with column densities up to 1E27 /m^2, and having speeds up to several thousand kilometers per second. The known emission features are in broad agreement with photoionized X-ray narrow and broad emission line models. We report on an X-ray spectroscopic study using 1.1 Ms XMM-Newton and 0.9 Ms Chandra grating observations of NGC 5548 spanning two decades. The aim is to search and characterize any potential spectroscopic features in addition to the known primary spectral components that are already modeled in high precision. We detect a weak unidentified excess emission feature at 18.4 Angstrom (18.1 Angstrom in the restframe). The feature is seen at >5 sigma statistical significance taking into account the look elsewhere effect. No known instrumental issues, atomic transitions, and astrophysical effects can explain this excess. The observed intensity of the possible feature seems to anti-correlate in time with the hardness ratio of the source. However, the variability might not be intrinsic, it might be caused by the time-variable obscuration by the outflows. An intriguing possibility is the line emission from charge exchange between a partially ionized outflow and a neutral layer in the same outflow, or in the close environment. Other possibilities, such as emission from a highly-ionized component with high outflowing speed, cannot be fully ruled out.

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