论文标题
在z = 2.56的三叶草类星体中发现无线电叶
Discovery of a radio lobe in the Cloverleaf Quasar at z = 2.56
论文作者
论文摘要
超级质量黑洞的快速增长及其对宿主星系的反馈在调节星系的演变方面起着重要作用,尤其是在早期宇宙中。但是,由于宇宙学变暗和大多数观察的角度分辨率有限,很难解决从活性银河核(AGN)到其宿主星系的反馈。重力镜头为其放大率提供了一种强大的工具,可以在高红移时从AGN和宿主星系上进行空间区分发射。在这里,我们根据光学,亚毫米度和无线电波长的观察数据,在强烈的Starburst Quasar,H1413+117中发现了无线电叶或Redshift $ z = 2.56 $的曲面。借助参数和非参数透镜模型以及源平面上的重建图像,我们找到了一个差异镜头,KPC缩放的,单面无线电叶,位于$ {\ sim} 1.2 \,\ Mathrm {kpc} $,位于源平面的主机Galaxy的西北部。从无线电频段的光谱能分布中,我们发现无线电叶具有一个驻留在1.5 GHz和8 GHz之间的能量转折点,表明年龄为20--50 MYR。这可能表明将木屑类星体从喷气模式转移到类星体模式的反馈切换。
The fast growth of supermassive black holes and their feedback to the host galaxies play an important role in regulating the evolution of galaxies, especially in the early Universe. However, due to cosmological dimming and the limited angular resolution of most observations, it is difficult to resolve the feedback from the active galactic nuclei (AGN) to their host galaxies. Gravitational lensing, for its magnification, provides a powerful tool to spatially differentiate emission originated from AGN and host galaxy at high redshifts. Here we report a discovery of a radio lobe in a strongly lensed starburst quasar, H1413+117 or Cloverleaf at redshift $z= 2.56$, based on observational data at optical, sub-millimetre, and radio wavelengths. With both parametric and non-parametric lens models and with reconstructed images on the source plane, we find a differentially lensed, kpc scaled, single-sided radio lobe, located at ${\sim}1.2\,\mathrm{kpc}$ to the north west of the host galaxy on the source plane. From the spectral energy distribution in radio bands, we find that the radio lobe has an energy turning point residing between 1.5 GHz and 8 GHz, indicating an age of 20--50 Myr. This could indicate a feedback switching of Cloverleaf quasar from the jet mode to the quasar mode.