论文标题

关于星系簇中的迷你山和AGN反馈之间的关系

On the relation between mini-halos and AGN feedback in clusters of galaxies

论文作者

Richard-Laferrière, A., Hlavacek-Larrondo, J., Nemmen, R. S., Rhea, C. L., Taylor, G. B., Prasow-Émond, M., Gendron-Marsolais, M., Latulippe, M., Edge, A. C., Fabian, A. C., Sanders, J. S., Hogan, M. T., Demontigny, G.

论文摘要

随着射电天文学中新的最先进的设施的出现,许多集群中已经确定了各种大规模的散射无线电结构。在这些扩散的无线电结构中,在凉爽的核心簇的中央区域中发现了无线电小山。它们的起源仍然未知,他们的挑战是发现。迄今为止,还不到三十。根据新的VLA观察结果,我们确认了大型酷酷核心群集PKS 0745 $ - $ 191($ z = 0.1028 $)中的迷你挂车,并在大型酷核心群集Macs J1447.4+0827($ z = 0.3755 $)中发现了一个。此外,使用对所有已知的迷你山谷的详细分析,我们探索了中央星系中的迷你山谷和AGN反馈过程之间的关系。我们发现,当将AGN无线电发射分解为过去爆发的组件时,与相对论射击相关的小型射线和中央星系无线电功率之间的证据表明,迷你无线电功率与X射线腔功率之间的相关性很强,以前未知的相关性,以及与相对论射流相关的中央星系无线电功率之间的证据。总体而言,我们的研究表明,在先前的假设之后,迷你大山脉直接连接到集群中的中央AGN。我们假设AGN的反馈可能是通过将能量注入群内培养基并重新调节旧颗粒的主要机制之一,而摇摆的运动可能会驱动寒冷前沿中的迷你 - halos的整体形状。因此,AGN的反馈不仅可能在抵消凉爽核心簇中的冷却方面起着至关重要的作用,而且还可能在重新启动簇中的非热颗粒中起着基本作用。

A variety of large-scale diffuse radio structures have been identified in many clusters with the advent of new state-of-the-art facilities in radio astronomy. Among these diffuse radio structures, radio mini-halos are found in the central regions of cool core clusters. Their origin is still unknown and they are challenging to discover; less than thirty have been published to date. Based on new VLA observations, we confirmed the mini-halo in the massive strong cool core cluster PKS 0745$-$191 ($z=0.1028$) and discovered one in the massive cool core cluster MACS J1447.4+0827 ($z=0.3755$). Furthermore, using a detailed analysis of all known mini-halos, we explore the relation between mini-halos and AGN feedback processes from the central galaxy. We find evidence of strong, previously unknown correlations between mini-halo radio power and X-ray cavity power, and between mini-halo and the central galaxy radio power related to the relativistic jets when spectrally decomposing the AGN radio emission into a component for past outbursts and one for on-going accretion. Overall, our study indicates that mini-halos are directly connected to the central AGN in clusters, following previous suppositions. We hypothesize that AGN feedback may be one of the dominant mechanisms giving rise to mini-halos by injecting energy into the intra-cluster medium and reaccelerating an old population of particles, while sloshing motion may drive the overall shape of mini-halos inside cold fronts. AGN feedback may therefore not only play a vital role in offsetting cooling in cool core clusters, but may also play a fundamental role in re-energizing non-thermal particles in clusters.

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