On the relation between mini-halos and AGN feedback in clusters of galaxies
Abstract
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 0745191 () and discovered one in the massive cool core cluster MACS J1447.4+0827 (). 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.
Keywords
Cite
@article{arxiv.2007.01306,
title = {On the relation between mini-halos and AGN feedback in clusters of galaxies},
author = {A. Richard-Laferrière and J. Hlavacek-Larrondo and R. S. Nemmen and C. L. Rhea and G. B. Taylor and M. Prasow-Émond and M. Gendron-Marsolais and M. Latulippe and A. C. Edge and A. C. Fabian and J. S. Sanders and M. T. Hogan and G. Demontigny},
journal= {arXiv preprint arXiv:2007.01306},
year = {2020}
}
Comments
26 pages, 9 figures, 8 tables, accepted for publication in MNRAS