Magnetic field amplification by cosmic-ray-driven turbulence: I. isotropic CR diffusion
arXiv:1308.5230 · doi:10.1093/mnras/stt1566
Abstract
We have performed magnetohydrodynamical simulations to study the amplification of magnetic fields in the precursors of shock waves. Strong magnetic fields are required in the precursors of the strong shocks that occur in supernova remnants. Observations also suggest that magnetic field amplification takes place in the weak shocks that occur in galaxy clusters and that produce so-called radio relics. Here, we extend the study of magnetic field amplification by cosmic-ray driven turbulence to weak shocks. The amplification is driven by turbulence that is produced by the cosmic-ray pressure acting on the density inhomogeneities in the upstream fluid. The clumping that has been inferred from X-ray data for the outskirts of galaxy clusters could provide some of the seed inhomogeneities. Magnetic field power spectra and Faraday maps are produced. Furthermore, we investigate how the synchrotron emission in the shock precursor can be used to verify the existence of this instability and constrain essential plasma parameters.
MNRAS in press. arXiv admin note: text overlap with arXiv:1205.6823 by other authors
References in corpus (10)
- Particle Acceleration on Megaparsec Scales in a Merging Galaxy Cluster
- Cosmic ray acceleration and escape from supernova remnants
- Radio signature of cosmological structure formation shocks
- Shock acceleration as origin of the radio relic in A521?
- Production of Magnetic Turbulence by Cosmic Rays Drifting Upstream of Supernova Remnant Shocks
- The Magnetohydrodynamics of Shock-Cloud Interaction in Three Dimensions
- Properties of gas clumps and gas clumping factor in the intra cluster medium
- Variation of cosmic ray injection across supernova shocks
- Self-Similar Evolution of Cosmic-Ray-Modified Quasi-Parallel Plane Shocks
- Magnetic field amplification by shocks in galaxy clusters: application to radio relics
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- Do radio relics challenge diffusive shock acceleration?
- Constraining the efficiency of cosmic ray acceleration by cluster shocks
- Testing cosmic-ray acceleration with radio relics: a high-resolution study using MHD and tracers
- Forecasts for the detection of the magnetised cosmic web from cosmological simulations
- Spectral age modelling of the `Sausage' cluster radio relic
- Cosmic Ray Transport, Energy Loss, and Influence in the Multiphase Interstellar Medium
- New mysteries and challenges from the Toothbrush relic: wideband observations from 550 MHz to 8 GHz
- A powerful double radio relic system discovered in PSZ1 G108.18-11.53: evidence for a shock with non-uniform Mach number?
- The Efficiency of Magnetic Field Amplification at Shocks by Turbulence
- The impact of the SZ effect on cm-wavelength (1-30 GHz) observation of galaxy cluster radio relics
- Cosmic Ray Acceleration by a Versatile Family of Galactic Wind Termination Shocks
- Turbulence-induced magnetic fields in shock precursors
- Cosmic-ray pressure driven magnetic field amplification: dimensional, radiative and field orientation effects
- Features of collisionless turbulence in the intracluster medium from simulated Faraday Rotation maps
- Basic Bell-MHD Turbulence