X-ray Cool Core Remnants Heated by Strong Radio AGN Feedback
Wenhao Liu, Ming Sun, G. Mark Voit, Dharam Vir Lal, Paul Nulsen,, Massimo Gaspari, Craig Sarazin, Steven Ehlert, Xianzhong Zheng

TL;DR
This study investigates how strong radio AGN feedback heats and disrupts cool cores in galaxy clusters, revealing that AGN activity correlates with small or disrupted cool cores and varies with cluster dynamics.
Contribution
It provides a systematic Chandra analysis of 108 clusters, showing the impact of AGN feedback on cool core sizes and the rapid fading of radio AGNs in small cool core clusters.
Findings
Strong radio AGNs are associated with small or disrupted cool cores.
Clusters with large offsets often have small cool cores, indicating merger effects.
Radio AGN activity diminishes more rapidly in small cool core clusters.
Abstract
Strong AGN heating provides an alternative means for the disruption of cluster cool cores (CCs) to cluster mergers. In this work we present a systematic Chandra study of a sample of 108 nearby () galaxy clusters, to investigate the effect of AGN heating on CCs. About 40% of clusters with small offsets between the BCG and the X-ray centre ( kpc) have small CCs. For comparison, 14 of 17 clusters with large offsets have small CCs, which suggests that mergers or sloshing can be efficient in reducing the CC size. Relaxed, small CC clusters generally have weak radio AGNs ( W Hz), and they show a lack of systems hosting a radio AGN with intermediate radio power ( W Hz). We found that the strongest circumnuclear ( kpc) X-ray emission only exists in clusters with strong radio AGN. The duty cycle…
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Taxonomy
TopicsPulsars and Gravitational Waves Research · Astrophysics and Cosmic Phenomena · Astrophysical Phenomena and Observations
