论文标题

隐藏在毒蛇星系中的模糊的AGN种群:通过光谱能量分布分解的识别

An obscured AGN population hidden in the VIPERS galaxies: identification through spectral energy distribution decomposition

论文作者

Pouliasis, E., Mountrichas, G., Georgantopoulos, I., Ruiz, A., Yang, M., Bonanos, A. Z.

论文摘要

X射线发射的检测构成了选择活性银河核(AGN)的可靠和有效工具,尽管它可能会偏向最吸收的AGN。简单的中红外宽带选择标准可以确定大量的发光和吸收的AGN,但宿主污染再次可能导致不均匀和不完整的样品。光谱能分布(SED)分解能够使AGN与恒星形成区域的发射分解,从而揭示了较弱的AGN成分。我们旨在通过SED建模在CFHTLS W1领域的Vipers调查中确定晦涩的AGN人群。我们为6,860个来源构建了SED,并使用贝叶斯方法以高置信度识别160个AGN。使用光谱法,我们证实了约85%的AGN的性质。与MID-IR颜色选定的AGN相比,我们的AGN样品高度完整(约92%),包括大量的亮度的星系为主导的系统。除了缺乏X射线发射(80%)外,SED拟合结果表明,大多数来源都被遮盖了。我们在光学,红外和X射线制度中使用许多诊断标准来验证这些结果。有趣的是,只有35%的最发光的MID-IR选定的AGN具有X射线对应物,表明吸收强。我们的工作强调了使用SED分解技术选择II型AGN人群的重要性,X射线或IR颜色调查可能仍未发现。

The detection of X-ray emission constitutes a reliable and efficient tool for the selection of Active Galactic Nuclei (AGNs), although it may be biased against the most heavily absorbed AGNs. Simple mid-IR broad-band selection criteria identify a large number of luminous and absorbed AGNs, yet again host contamination could lead to non-uniform and incomplete samples. Spectral Energy Distribution (SED) decomposition is able to decouple the emission from the AGN versus that from star-forming regions, revealing weaker AGN components. We aim to identify the obscured AGN population in the VIPERS survey in the CFHTLS W1 field through SED modelling. We construct SEDs for 6,860 sources and identify 160 AGNs at a high confidence level using a Bayesian approach. Using optical spectroscopy, we confirm the nature of ~85% of the AGNs. Our AGN sample is highly complete (~92%) compared to mid-IR colour selected AGNs, including a significant number of galaxy-dominated systems with lower luminosities. In addition to the lack of X-ray emission (80%), the SED fitting results suggest that the majority of the sources are obscured. We use a number of diagnostic criteria in the optical, infrared and X-ray regime to verify these results. Interestingly, only 35% of the most luminous mid-IR selected AGNs have X-ray counterparts suggesting strong absorption. Our work emphasizes the importance of using SED decomposition techniques to select a population of type II AGNs, which may remain undetected by either X-ray or IR colour surveys.

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