Magnetic field amplification by shocks in galaxy clusters: application to radio relics
arXiv:1204.2455 · doi:10.1111/j.1365-2966.2012.21084.x
Abstract
Merger shocks induce turbulence in the intra-cluster medium (ICM), and, under some circumstances, accelerate electrons to relativistic velocities to form so-called radio relics. Relics are mostly found at the periphery of galaxy clusters and appear to have magnetic fields at the microGauss level. Here we investigate the possible origins of these magnetic fields. Turbulence produced by the shock itself cannot explain the magnitude of these fields. However, we argue that if the turbulent pressure support in the ICM upstream of the merger shock is of the order of 10 to 30 percent of the total pressure on scales of a few times 100 kpc, then vorticity generated by compressive and baroclinic effects across the shock discontinuity can lead to a sufficient amplification of the magnetic field. Compressional amplification can explain the large polarisation of the radio emission more easily than dynamo turbulent amplification. Finally, clumping of the ICM is shown to have a negligible effect on magnetic field amplification.
9 pages, 1 figure. MNRAS, accepted
References in corpus (19)
- The Density Probability Distribution in Compressible Isothermal Turbulence: Solenoidal versus Compressive Forcing
- Turbulence and Magnetic Fields in the Large Scale Structure of the Universe
- Particle Acceleration on Megaparsec Scales in a Merging Galaxy Cluster
- Observations of extended radio emission in clusters
- Baryons at the Edge of the X-ray Brightest Galaxy Cluster
- Numerical simulations of compressively driven interstellar turbulence: I. Isothermal gas
- The Fractal Density Structure in Supersonic Isothermal Turbulence: Solenoidal versus Compressive Energy Injection
- Radio signature of cosmological structure formation shocks
- Giant Ringlike Radio Structures Around Galaxy Cluster Abell 3376
- Cluster Magnetic Fields from Galactic Outflows
- The intracluster magnetic field power spectrum in Abell 2255
- Shock acceleration as origin of the radio relic in A521?
- Cosmological Shock Waves in the Large Scale Structure of the Universe: Non-gravitational Effects
- Double relics in Abell 2345 and Abell 1240: spectral index and polarization analysis
- Cosmological MHD simulation of a cooling flow cluster
- The Magnetohydrodynamics of Shock-Cloud Interaction in Three Dimensions
- Diffuse radio emission from clusters in the MareNostrum Universe simulation
- Hydrodynamical adaptive mesh refinement simulations of turbulent flows - II. Cosmological simulations of galaxy clusters
- Vorticity production through rotation, shear and baroclinicity
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- GASP XXXVIII: The LOFAR-MeerKAT-VLA view on the non-thermal side of a jellyfish galaxy
- Downstream depolarization in the Sausage relic: a 1-4 GHz Very Large Array study
- On the small scale turbulent dynamo in the intracluster medium: A comparison to dynamo theory
- How Much Can We Learn From A Merging Cold Front Cluster? : Insights From X-ray Temperature and Radio Maps of Abell 3667
- Using the polarization properties of double radio relics to probe the turbulent compression scenario
- The diffuse radio emission in the high-redshift cluster PSZ2 G091.83+26.11: total intensity and polarisation analysis with Very Large Array 1-4 GHz observations
- Clusters of galaxies and the cosmic web with SKA
- Radio-relic and the diffuse emission trail discovered in a low mass galaxy cluster Abell 1697
- Influence of adaptive mesh refinement and the hydro solver on shear-induced mass stripping in a minor-merger scenario
- Constraining the magnetic field in the galaxy cluster Abell 2142 using MeerKAT L-band polarisation data
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