A Parameter Space Exploration of Galaxy Cluster Mergers II: Effects of Magnetic Fields
arXiv:1904.10024 · doi:10.3847/1538-4357/ab3983
Abstract
The hot intracluster plasma in clusters of galaxies is weakly magnetized. Mergers between clusters produce gas compression and motions which can increase the magnetic field strength. In this work, we perform high-resolution non-radiative magnetohydrodynamics simulations of binary galaxy cluster mergers with magnetic fields, to examine the effects of these motions on the magnetic field configuration and strength, as well as the effect of the field on the gas itself. Our simulations sample a parameter space of initial mass ratios and impact parameters. During the first core passage of mergers, the magnetic energy increases via gas compression. After this, shear flows produce temporary, Mpc-scale, strong-field "filament" structures. Lastly, magnetic fields grow stronger by turbulence. Field amplification is most effective for low mass ratio mergers, but mergers with a large impact parameter can increase the magnetic energy more via shearing motions. The amplification of the magnetic field is most effective in between the first two core passages of each cluster merger. After the second core passage, the magnetic energy in this region gradually decreases. In general, the transfer of energy from gas motions to the magnetic field is not significant enough to have a substantial effect on gas mixing and the subsequent increase in entropy which occurs in cluster cores as a result. In the absence of radiative cooling, this results in an overall decrease of the magnetic field strength in cluster cores. In these regions, the final magnetic field is isotropic, while it can be significantly tangential at larger radii.
29 pages, 42 figures, accepted for publication in ApJ
References in corpus (32)
- First results from the IllustrisTNG simulations: radio haloes and magnetic fields
- Intracluster Medium Entropy Profiles for a Chandra Archival Sample of Galaxy Clusters
- Observations of extended radio emission in clusters
- The impact of mergers on relaxed X-ray clusters - I. Dynamical evolution and emergent transient structures
- GMRT Radio Halo Survey in galaxy clusters at z = 0.2 -- 0.4 I.The REFLEX sub--sample
- Buoyancy Instabilities in Weakly Magnetized Low Collisionality Plasmas
- Resolved magnetic dynamo action in the simulated intracluster medium
- The intracluster magnetic field power spectrum in Abell 2255
- Magnetic Field Amplification in Galaxy Clusters and its Simulation
- A Direct Multigrid Poisson Solver for Oct-Tree Adaptive Meshes
- On the amplification of magnetic fields in cosmic filaments and galaxy clusters
- On the Origin of Cores in Simulated Galaxy Clusters
- Impact of tangled magnetic fields on AGN-blown bubbles
- The intracluster magnetic field power spectrum in Abell 2382
- Magnetic Fields in the Center of the Perseus Cluster
- Anisotropic Thermal Conduction and the Cooling Flow Problem in Galaxy Clusters
- Cosmological MHD simulation of a cooling flow cluster
- Gas perturbations in cool cores of galaxy clusters: effective equation of state, velocity power spectra and turbulent heating
- Nonlinear Simulations of the Heat Flux Driven Buoyancy Instability and its Implications for Galaxy Clusters
- Dynamical evolution of magnetic fields in the intracluster medium
- Self-similar energetics in large clusters of galaxies
- Discovery of diffuse radio emission at the center of the most X-ray-luminous cluster RX J1347.5-1145
- Saturation of the Magnetothermal Instability in Three Dimensions
- The Effect of Anisotropic Viscosity on Cold Fronts in Galaxy Clusters
- Is there a giant Kelvin-Helmholtz instability in the sloshing cold front of the Perseus cluster?
- Simulations of MHD Instabilities in Intracluster Medium Including Anisotropic Thermal Conduction
- The split in the ancient cold front in the Perseus cluster
- Fields and Filaments in the Core of the Centaurus Cluster
- N-body + Magnetohydrodynamical Simulations of Merging Clusters of Galaxies: Characteristic Magnetic Field Structures Generated by Bulk Flow Motion
- A Deep X-Ray Look At Abell 2142 --- Viscosity Constraints From Kelvin-Helmholtz Eddies, A Displaced Cool Peak That Makes A Warm Core, And A Possible Plasma Depletion Layer
- The Co-Evolution of a Magnetized Intracluster Medium and Hot Galactic Coronae: Magnetic Field Amplification and Turbulence Generation
- The Evaporation and Survival of Cluster Galaxies' Coronae Part I: The Effectiveness of Isotropic Thermal Conduction Including Saturation
Cited by in corpus (12)
- How merger-driven gas motions in galaxy clusters can turn AGN bubbles into radio relics
- The Three Hundred project: galaxy cluster mergers and their impact on the stellar component of brightest cluster galaxies
- Troubled cosmic flows: turbulence, enstrophy and helicity from the assembly history of the intracluster medium
- Reconstruction of Radio Relics and X-ray Tails in an Off-axis Cluster Merger: Hydrodynamical Simulations of A115
- Turbulent magnetic fields in merging clusters: A case study of Abell 2146
- Is there an enormous cold front at the virial radius of the Perseus cluster?
- Fundamental MHD scales -- II: the kinematic phase of the supersonic small-scale dynamo
- Deep Chandra observations of merging galaxy cluster ZwCl 2341+0000
- Jet interaction with galaxy cluster mergers
- A toy model for gas sloshing in galaxy clusters
- The Merger Dynamics of the X-ray Emitting Plasma in Clusters of Galaxies
- Taking control of compressible modes: bulk viscosity and the turbulent dynamo