首页> 外文期刊>The Astrophysical journal >OBSCURED ACTIVE GALACTIC NUCLEI AND THE X-RAY, OPTICAL, AND FAR-INFRARED NUMBER COUNTS OF ACTIVE GALACTIC NUCLEI IN THE GOODS FIELDS
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OBSCURED ACTIVE GALACTIC NUCLEI AND THE X-RAY, OPTICAL, AND FAR-INFRARED NUMBER COUNTS OF ACTIVE GALACTIC NUCLEI IN THE GOODS FIELDS

机译:封闭的活性银河系核素和货物领域中活性银河系核素的X射线,光学和远红外数

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摘要

The deep X-ray, optical, and far-infrared fields that constitute the Great Observatories Origins Deep Survey (GOODS) are sensitive to obscured active galactic nuclei (AGNs; N_H approx > 10~(22) cm~(-2)) at the quasar epoch (z ~ 2-3), as well as to unobscured AGNs as distant as z ~ 7. Luminous X-ray emission is a sign of accretion onto a supermassive black hole and thus reveals all but the most heavily obscured AGNs. We combine X-ray luminosity functions with appropriate spectral energy distributions for AGNs to model the X-ray, optical, and far-infrared flux distributions of the X-ray sources in the GOODS fields. A simple model based on the unified paradigm for AGNs, with ~3 times as many obscured AGNs as unobscured, successfully reproduces the z-band flux distributions measured in the deep Hubble Space Telescope ACS observations of the GOODS-North and GOODS-South fields. This model is also consistent with the observed spectroscopic and photometric redshift distributions once selection effects are considered. The previously reported discrepancy between observed spectroscopic redshift distributions and the predictions of population synthesis models for the X-ray background can be explained by a bias against the most heavily obscured AGNs generated by both X-ray observations and the identification of sources via optical spectroscopy. We predict the AGN number counts for Spitzer MIPS 24 μm and IRAC 3.6-8 μm observations in the GOODS fields, which will verify whether most AGNs in the early universe are obscured in the optical. Such AGNs should be very bright far-infrared sources and include some obscured AGNs missed even by X-ray observations.
机译:构成大天文台起源深层调查(GOODS)的深X射线,光学和远红外场对被遮盖的活动银河核(AGNs; N_H大约> 10〜(22)cm〜(-2))敏感准星纪(z〜2-3),以及距z〜7远的未被遮挡的AGNs。发光的X射线发射是在超大质量黑洞上积聚的迹象,因此可以显示除了最被遮盖的AGNs。我们将X射线的光度函数与适当的AGN光谱能量分布相结合,以对GOODS字段中X射线源的X射线,光学和远红外通量分布进行建模。一个简单的基于AGN统一范式的模型,其模糊AGN约是未模糊AGN的三倍,成功地再现了在深哈勃太空望远镜ACS观测到的GOODS-North和GOODS-South场的z波段通量分布。一旦考虑选择效应,该模型也与观察到的光谱和光度红移分布一致。先前报告的观察到的光谱红移分布与X射线背景的种群合成模型预测之间的差异可以通过对X射线观察和通过光谱学识别源产生的最严重模糊的AGN的偏见来解释。我们预测GOODS字段中Spitzer MIPS 24μm和IRAC 3.6-8μm观测的AGN数计数,这将验证光学系统中早期宇宙中的大多数AGN是否被遮盖。这样的AGN应该是非常明亮的远红外线源,并且包括一些X射线观察甚至漏掉的模糊AGN。

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