Cluster Radio Relics as a Tracer of Shock Waves of the Large-Scale Structure Formation
Torsten A. Ensslin (1), Peter L. Biermann (1), Ulrich Klein (2), Sven, Kohle (2), ((1) MPI fuer Radioastronomie Bonn, (2) Universitaet Bonn)

TL;DR
This paper provides evidence that shock waves from large-scale structure formation accelerate particles, creating radio relics in galaxy clusters, and develops a theory matching observational data of nine relics.
Contribution
It introduces a new theory linking cosmological shock structures to radio relics and validates it with observational data from nine galaxy clusters.
Findings
Radio relics are linked to shock waves from large-scale structure formation.
The theory explains spectral and polarization properties of radio relics.
Predicted shock parameters align with observational data.
Abstract
We present evidence for the existence of shock waves caused by the formation of the large-scale structure. In some clusters of galaxies peripherally located sources of extended diffuse radio emission exist, the so-called cluster radio relics. They have steep radio spectra but no apparent cutoff, as old remnants of radio galaxies usually have. Therefore particle acceleration has to take place within them. We propose that shock structures of the cosmological large-scale matter flows are responsible for the acceleration of relativistic electrons: cluster accretion shocks and bow shocks of merger events. We develop a theory of radio plasma having traversed these shocks and compare it to observational data of nine radio relics (0038-096, 0917+75, 1140+203, 1253+275, 1712+64, 1706+78, 2006-56, 2010-57, 1401-33) and their host clusters (A85, A786, A1367, Coma, A2255, A2256, A3667, S753). The…
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Taxonomy
TopicsAstro and Planetary Science
