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
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.