On the Physics of Radio Halos in Galaxy Clusters: Scaling Relations and Luminosity Functions
Fabio Zandanel (1), Christoph Pfrommer (2), Francisco Prada (3,4,1), ((1) Instituto de Astrofisica de Andalucia (CSIC), Granada, Spain, (2), Heidelberg Institute for Theoretical Studies, Heidelberg, Germany, (3) Campus, of International Excellence UAM+CSIC, Madrid

TL;DR
This paper models the physics of radio halos in galaxy clusters, linking cosmic ray interactions with thermal protons to observed radio properties and predicting the detectability of halos in future low-frequency surveys.
Contribution
It introduces a comprehensive CR-based model incorporating transport effects, successfully reproducing observed radio halo features and luminosity functions.
Findings
Model reproduces observed surface brightness profiles.
Successfully matches radio-loud and radio-quiet cluster distributions.
Predicts detection of ~3500 radio halos in future surveys.
Abstract
The underlying physics of giant radio halos and mini halos in galaxy clusters is still an open question, which becomes more pressing with the growing number of detections. In this paper, we explore the possibility that radio-emitting electrons are generated in hadronic cosmic ray (CR) proton interactions with ambient thermal protons of the intra-cluster medium. Our CR model derives from cosmological hydrodynamical simulations of cluster formation and additionally accounts for CR transport in the form of CR streaming and diffusion. This opens the possibility of changing the radio halo luminosity by more than an order of magnitude on a dynamical time scale. We build a mock galaxy cluster catalog from the large MultiDark N-body LCDM simulation by adopting a phenomenological gas density model for each cluster based on X-ray measurements that matches Sunyaev-Zel'dovich (SZ) and X-ray scaling…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Astrophysics and Cosmic Phenomena · Dark Matter and Cosmic Phenomena
