N-body + Magnetohydrodynamical Simulations of Merging Clusters of Galaxies: Characteristic Magnetic Field Structures Generated by Bulk Flow Motion
arXiv:0807.3765 · doi:10.1086/592059
Abstract
We present results from N-body + magnetohydrodynamical simulations of merging clusters of galaxies. We find that cluster mergers cause various characteristic magnetic field structures because of the strong bulk flows in the intracluster medium. The moving substructures result in cool regions surrounded by the magnetic field. These will be recognized as magnetized cold fronts in the observational point of view. A relatively ordered magnetic field structure is generated just behind the moving substructure. Eddy-like field configurations are also formed by Kelvin-Helmholtz instabilities. These features are similarly seen even in off-center mergers though the detailed structures change slightly. The above-mentioned characteristic magnetic field structures are partly recognized in Faraday rotation measure maps. The higher absolute values of the rotation measure are expected when observed along the collision axis, because of the elongated density distribution and relatively ordered field structure along the axis. The rotation measure maps on the cosmic microwave background radiation, which covers clusters entirely, could be useful probes of not only the magnetic field structures but also the internal dynamics of the intracluster medium.
Accepted for publication in ApJ
References in corpus (5)
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- Synchrotron Intensity Gradient Revealing Magnetic Fields in Galaxy Clusters
- Turbulent magnetic fields in merging clusters: A case study of Abell 2146
- Suzaku and Chandra observations of the galaxy cluster RXC J1053.7+5453 with a radio relic
- XMM-Newton view of the shock heating in an early merging cluster, CIZA J1358.94750
- The Merger Dynamics of the X-ray Emitting Plasma in Clusters of Galaxies