A multishock scenario for the formation of radio relics

Author:

Smolinski David C1,Wittor Denis12,Vazza Franco123ORCID,Brüggen Marcus1ORCID

Affiliation:

1. Hamburger Sternwarte, Universität Hamburg , Gojenbergsweg 112, D-21029 Hamburg , Germany

2. Dipartimento di Fisica e Astronomia, Universita di Bologna , Via Gobetti 93/2, I-40122 Bologna , Italy

3. Istituto di Radio Astronomia, INAF , Via Gobetti 101, I-40121 Bologna , Italy

Abstract

ABSTRACT Radio relics are giant sources of diffuse synchrotron radio emission in the outskirts of galaxy clusters that are associated with shocks in the intracluster medium. Still, the origin of relativistic particles that make up relics is not fully understood. For most relics, diffusive shock acceleration (DSA) of thermal electrons is not efficient enough to explain observed radio fluxes. In this paper, we use a magnetohydrodynamic simulation of galaxy clusters in combination with Lagrangian tracers to simulate the formation of radio relics. Using a Fokker–Planck solver to compute the energy spectra of relativistic electrons, we determine the synchrotron emission of the relic. We find that re-acceleration of fossil electrons plays a major role in explaining the synchrotron emission of radio relics. Particles that pass through multiple shocks contribute significantly to the overall luminosity of a radio relic and greatly boost the effective acceleration efficiency. Furthermore, we find that the assumption that the luminosity of a radio relic can be explained with DSA of thermal electrons leads to an overestimate of the acceleration efficiency by a factor of more than 103.

Funder

Deutsche Forschungsgemeinschaft

ERC

CUP

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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