The hot plasma within merging galaxy clusters is predicted to be filled with shocks and turbulence that may convert part of their kinetic energy into relativistic electrons and magnetic fields generating synchrotron radiation. Analyzing Low Frequency Array (LOFAR) observations of the galaxy cluster Abell 2255, we show evidence of radio synchrotron emission distributed over very large scales of at least 5 megaparsec. The pervasive radio emission witnesses that shocks and turbulence efficiently transfer kinetic energy into relativistic particles and magnetic fields in a region that extends up to the cluster outskirts. The strength of the emission requires a magnetic field energy density at least 100 times higher than expected from a simple co...
Radio haloes and radio relics are diffuse synchrotron sources that extend over Mpc-scales and are fo...
We simulate the evolution of relativistic electrons injected into the medium of a small galaxy clust...
In the present-day Universe, magnetic fields pervade galaxy clusters1 and have strengths of a few mi...
The hot plasma within merging galaxy clusters is predicted to be filled with shocks and turbulence t...
Galaxy clusters are the most massive gravitationally bound structures in the Universe. They grow by ...
We present a first attempt to investigate the origin of radio emitting electrons in the newly discov...
Galaxy clusters are the most massive constituents of the large-scale structure of the universe. Alth...
Merging galaxy clusters produce low Mach number shocks in the intracluster medium. These shocks can ...
This paper is part of the 1st data release of the LoTSS Deep Fields. Re-submitted paper (reply to re...
Galaxy clusters are the most massive gravitationally bound structures in the Universe. Diffuse non-t...
Reproduced with permission from Astronomy & Astrophysics. © 2019 ESOWe present LOFAR data from 110-1...
none11siThis article has been accepted for publication in MNRAS ©: 2018 The Author(s) Published by O...
Diffuse synchrotron radio emission from cosmic ray electrons is observed at the centre of a number o...
Context. Relativistic electrons and magnetic fields permeate the intra-cluster medium (ICM) and mani...
Observed in a significant fraction of clusters and groups of galaxies, diffuse radio synchrotron emi...
Radio haloes and radio relics are diffuse synchrotron sources that extend over Mpc-scales and are fo...
We simulate the evolution of relativistic electrons injected into the medium of a small galaxy clust...
In the present-day Universe, magnetic fields pervade galaxy clusters1 and have strengths of a few mi...
The hot plasma within merging galaxy clusters is predicted to be filled with shocks and turbulence t...
Galaxy clusters are the most massive gravitationally bound structures in the Universe. They grow by ...
We present a first attempt to investigate the origin of radio emitting electrons in the newly discov...
Galaxy clusters are the most massive constituents of the large-scale structure of the universe. Alth...
Merging galaxy clusters produce low Mach number shocks in the intracluster medium. These shocks can ...
This paper is part of the 1st data release of the LoTSS Deep Fields. Re-submitted paper (reply to re...
Galaxy clusters are the most massive gravitationally bound structures in the Universe. Diffuse non-t...
Reproduced with permission from Astronomy & Astrophysics. © 2019 ESOWe present LOFAR data from 110-1...
none11siThis article has been accepted for publication in MNRAS ©: 2018 The Author(s) Published by O...
Diffuse synchrotron radio emission from cosmic ray electrons is observed at the centre of a number o...
Context. Relativistic electrons and magnetic fields permeate the intra-cluster medium (ICM) and mani...
Observed in a significant fraction of clusters and groups of galaxies, diffuse radio synchrotron emi...
Radio haloes and radio relics are diffuse synchrotron sources that extend over Mpc-scales and are fo...
We simulate the evolution of relativistic electrons injected into the medium of a small galaxy clust...
In the present-day Universe, magnetic fields pervade galaxy clusters1 and have strengths of a few mi...