论文标题

X射线光谱中遮盖的AGN的人口统计学以多波长度信息引导

The demographics of obscured AGN from X-ray spectroscopy guided by multiwavelength information

论文作者

Laloux, Brivael, Georgakakis, Antonis, Andonie, Carolina, Alexander, David M., Ruiz, Angel, Rosario, David J., Aird, James, Buchner, Johannes, Carrera, Francisco J., Lapi, Andrea, Almeida, Cristina Ramos, Salvato, Mara, Shankar, Francesco

论文摘要

活性银河核(AGN)的完整人口普查是了解跨宇宙时间的超质量黑洞的生长的先决条件。对此目标的一个重大挑战是尚不确定的严重晦涩的AGN下落。本文通过开发一种将X射线频谱信息与源自多波长观测的先验的方法相结合的方法来对该人群的人口统计进行了新的限制。我们在Chandra Cosmos Legacy调查中选择X射线AGN,并使用带有星系和AGN模板的2.2-500μm$频谱分布来确定AGN组件的中红外(6μm$)亮度。然后采用X射线与6μm$ $亮度之间的经验相关性,以推断单个AGN X射线时的固有积聚光度。这被用作我们贝叶斯X射线光谱分析中的先前信息,以估计物理特性,例如视线掩盖。我们的方法破坏了影响X射线光谱分析的增生光度和遮挡之间的脱色类,特别是对于低光子计数X射线光谱的最严重遮盖(Compton-Thick)AGN。然后将X射线光谱结果与Chandra Cosmos遗产调查的选择函数结合使用,以得出AGN空间密度和$ 21.0^{+16.1} _ { - 9.9} \%$ $ z <0.5 $的compton厚度分数。在较高的红移,我们的分析提出了$ \ le 40 \%$的Compton-Thick-Thick-Agn分数的上限。这些估计是在文献中确定的值范围的低端,并强调了多波伦长度方法在应对严重掩盖的AGN人口统计学挑战方面的重要性。

A complete census of Active Galactic Nuclei (AGN) is a prerequisite for understanding the growth of supermassive black holes across cosmic time. A significant challenge toward this goal is the whereabouts of heavily obscured AGN that remain uncertain. This paper sets new constraints on the demographics of this population by developing a methodology that combines X-ray spectral information with priors derived from multiwavelength observations. We select X-ray AGN in the Chandra COSMOS Legacy survey and fit their $2.2-500μm$ spectral energy distributions with galaxy and AGN templates to determine the mid-infrared ($6μm$) luminosity of the AGN component. Empirical correlations between X-ray and $6μm$ luminosities are then adopted to infer the intrinsic accretion luminosity at X-rays for individual AGN. This is used as prior information in our Bayesian X-ray spectral analysis to estimate physical properties, such as line-of-sight obscuration. Our approach breaks the degeneracies between accretion luminosity and obscuration that affect X-ray spectral analysis, particularly for the most heavily obscured (Compton-Thick) AGN with low photon counts X-ray spectra. The X-ray spectral results are then combined with the selection function of the Chandra COSMOS Legacy survey to derive the AGN space density and a Compton-Thick fraction of $21.0^{+16.1}_{-9.9}\%$ at redshifts $z<0.5$. At higher redshift, our analysis suggests upper limits to the Compton-Thick AGN fraction of $\le 40\%$. These estimates are at the low end of the range of values determined in the literature and underline the importance of multiwavelength approaches for tackling the challenge of heavily obscured AGN demographics.

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