论文标题

COSMOS2020:X射线和无线电堆积揭示的巨大静态星系的无处不在的AGN活动

COSMOS2020: Ubiquitous AGN Activity of Massive Quiescent Galaxies at $0<z<5$ Revealed by X-ray and Radio Stacking

论文作者

Ito, Kei, Tanaka, Masayuki, Miyaji, Takamitsu, Ilbert, Olivier, Kauffmann, Olivier B., Koekemoer, Anton M., Marchesi, Stefano, Shuntov, Marko, Toft, Sune, Valentino, Francesco, Weaver, John R.

论文摘要

我们用$ \ log {(m_ \ star/m_ \ odot)}> 10 $ at $ 0 <z <5 $ {(m_ \ star/m_ \ odot)}> 10 $表征静态星系(QGS)的平均X射线和无线电属性。 QG是从最新的COSMOS2020目录中选择的。我们对Chandra Cosmos Legacy调查的X射线图像进行了堆叠分析,以分别未发现的QG。多亏了大型示例和深图像,堆叠的X射线信号可显着检测到$ z \ sim5 $。平均X射线光度无法通过X射线二进制的X射线光度来解释,这表明QGS中存在的低亮度活性银河核(AGNS)。此外,$ z> 1.5 $的QGS的X射线AGN光度高于以与QGS相同方式得出的星形星系(SFG)的X射线弹性。 VLA-COSMOS图像的堆叠分析是针对相同样本进行的,并且还检测到QGS的无线电信号最多可达$ z \ sim5 $。我们发现,$ z> 1.5 $的QGS的无线电发光度也高于SFG,这与X射线分析非常吻合。 X射线和无线电波长中个体分析提出的QG中的AGN活性增强了其在高红移时淬火的重要作用。在$ z <1.5 $的情况下,它们增强的AGN活动不太明显,可以将其解释为在较低的红移(例如环境淬火)上其他人的越来越多的作用。

We characterize the average X-ray and radio properties of quiescent galaxies (QGs) with $\log{(M_\star/M_\odot)}>10$ at $0<z<5$. QGs are photometrically selected from the latest COSMOS2020 catalog. We conduct the stacking analysis of X-ray images of the Chandra COSMOS Legacy Survey for individually undetected QGs. Thanks to the large sample and deep images, the stacked X-ray signal is significantly detected up to $z\sim5$. The average X-ray luminosity can not be explained by the X-ray luminosity of X-ray binaries, suggesting that the low-luminosity active galactic nuclei (AGNs) ubiquitously exist in QGs. Moreover, the X-ray AGN luminosity of QGs at $z>1.5$ is higher than that of star-forming galaxies (SFGs), derived in the same manner as QGs. The stacking analysis of the VLA-COSMOS images is conducted for the identical sample, and the radio signal for QGs is also detected up to $z\sim5$. We find that the radio AGN luminosity of QGs at $z>1.5$ is also higher than SFGs, which is in good agreement with the X-ray analysis. The enhanced AGN activity in QGs suggested by the individual analysis in the X-ray and radio wavelength supports its important role for quenching at high redshift. Their enhanced AGN activity is less obvious at $z<1.5$, which can be interpreted as an increasing role of others at lower redshifts, such as environmental quenching.

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