论文标题

Chandra Deep Field South的低亮度AGN伪装成大量的AGN人数

A Large Population of Obscured AGN in Disguise as Low Luminosity AGN in Chandra Deep Field South

论文作者

Lambrides, Erini, Chiaberge, Marco, Heckman, Timothy, Gilli, Roberto, Vito, Fabio, Norman, Colin

论文摘要

积极积聚超质量黑洞(或活跃的银河核-AGN)的种群合成模型预测,必须在密集后面生长的很大一部分,掩盖了气体和灰尘的筛选。深度X射线调查被认为提供了最完整,最公正的AGN样本,但是有强有力的观察证据表明,一部分被遮盖的AGN人群被遗漏了。在本文中,我们使用了迄今为止最深的X射线调查(Chandra 7MS商品 - 南方调查)的AGN样本,以调查低通量X射线源的性质。我们充分利用了商品南部场的广泛多波长覆盖范围,并与从无线电到IR的波长交叉匹配我们的对象。我们发现样品中的低X射线通量AGN具有X射线亮度,表明低亮度AGN分类,而无线电,红外和光学对应物表示适度至强大的AGN分类。我们发现,通过X射线微弱源的X射线检测,预测的色谱柱密度平均比计算的柱密度高的数量级。我们将结果解释为通过X射线亮度掩盖AGN掩盖为低亮度AGN的证据。当我们比较有或没有这些物体的遮盖的AGN空间密度的估计时,我们发现样品探索的最低X射线光度制度的差异为40%。

Population synthesis models of actively accreting super-massive black holes (or active galactic nuclei -- AGN) predict a large fraction that must grow behind dense, obscuring screens of gas and dust. Deep X-ray surveys are thought to have provided the most complete and unbiased samples of AGN, but there is strong observational evidence that a portion of the population of obscured AGN is being missed. In this paper we use a sample of AGN derived from the deepest X-ray survey to date, the Chandra 7Ms GOODS-South Survey, to investigate the nature of low flux X-ray sources. We make full use of the extensive multi-wavelength coverage of the GOODS-South field, and cross-match our objects with wavelengths from the Radio to the IR. We find the low X-ray flux AGN in our sample have X-ray luminosities that indicate low-luminosity AGN classification, while their radio, infrared and optical counterparts indicate moderate to powerful AGN classification. We find the predicted column densities is on average an order of magnitude higher than the calculated column densities via X-ray detections for X-ray faint sources. We interpret our results as evidence of obscured AGN disguising as low-luminosity AGN via their X-ray luminosities. When we compare the estimation of the obscured AGN space density with and without these objects, we find a difference of 40% in the lowest X-ray luminosity regime probed by our sample.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源