Cluster Turbulence
arXiv:astro-ph/9802335 · doi:10.1007/BFb0106425
Abstract
We report on results of recent, high resolution hydrodynamic simulations of the formation and evolution of X-ray clusters of galaxies carried out within a cosmological framework. We employ the highly accurate piecewise parabolic method (PPM) on fixed and adaptive meshes which allow us to resolve the flow field in the intracluster gas. The excellent shock capturing and low numerical viscosity of PPM represent a substantial advance over previous studies using SPH. We find that in flat, hierarchical cosmological models, the ICM is in a turbulent state long after turbulence generated by the last major merger should have decayed away. Turbulent velocites are found to vary slowly with cluster radius, being of in the core, increasing to at the virial radius. We argue that more frequent minor mergers maintain the high level of turbulence found in the core where dynamical times are short. Turbulent pressure support is thus significant throughout the cluster, and results in a somewhat cooler cluster () for its mass. Some implications of cluster turbulence are discussed.
10 pages, 4 figures, to appear in Ringberg Workshop on M87, eds. K. Meisenheimer and H-J. Roeser, Springer Verlag. Additional color images available at http://zeus.ncsa.uiuc.edu:8080/Xray/clusters.html
References in corpus (1)
Cited by in corpus (59)
- Astrophysical magnetic fields and nonlinear dynamo theory
- Residual Gas Motions in the Intracluster Medium and Bias in Hydrostatic Measurements of Mass Profiles of Clusters
- Turbulent gas motions in galaxy cluster simulations: The role of SPH viscosity
- Turbulent Heating in Galaxy Clusters Brightest in X-rays
- Probing Turbulence in the Coma Galaxy Cluster
- Ionizing Photon Escape Fractions from High Redshift Dwarf Galaxies
- Constrained Simulations of the Real Universe: II. Observational Signatures of Intergalactic Gas in the Local Supercluster Region
- Plasma instabilities and magnetic-field growth in clusters of galaxies
- Turbulence, magnetic fields and plasma physics in clusters of galaxies
- XMM-Newton Observations of the Perseus Cluster II: Evidence for Gas Motions in the Core
- Alfvenic reacceleration of relativistic particles in galaxy clusters: MHD waves, leptons and hadrons
- Magnetic Field Seeding by Galactic Winds
- Shaken and stirred: conduction and turbulence in clusters of galaxies
- Investigating the velocity structure and X-ray observable properties of simulated galaxy clusters with PHOX
- A Simple and Accurate Model for Intra-Cluster Gas
- On the Detectability of Turbulence and Bulk Flows in X-ray Clusters
- Mass Profiles of the Typical Relaxed Galaxy Clusters A2199 and A496
- Thermal SZ fluctuations in the ICM: probing turbulence and thermodynamics in Coma cluster with
- Hydrodynamical adaptive mesh refinement simulations of turbulent flows - II. Cosmological simulations of galaxy clusters
- Spectral index maps of the radio halos in Abell 665 and Abell 2163
- Detecting edges in the X-ray surface brightness of galaxy clusters
- Constraining Gas Motions in the Intra-Cluster Medium
- The relation between gas density and velocity power spectra in galaxy clusters: qualitative treatment and cosmological simulations
- Fluctuation dynamos and their Faraday rotation signatures
- Gas perturbations in cool cores of galaxy clusters: effective equation of state, velocity power spectra and turbulent heating
- Effect of Internal Flows on Sunyaev-Zeldovich Measurements of Cluster Peculiar Velocities
- Ram pressure stripping of disc galaxies orbiting in clusters. II. Galactic wakes
- Adaptively refined large eddy simulations of clusters
- Galaxy Motions, Turbulence and Conduction in Clusters of Galaxies
- Rotation and Turbulence of the Hot ICM in Galaxy Clusters
- Physical Origins of Gas Motions in Galaxy Cluster Cores: Interpreting Hitomi Observations of the Perseus Cluster
- Merging Binary Clusters
- Turbulent Amplification and Structure of the Intracluster Magnetic Field
- Constraints on the ICM velocity power spectrum from the X-ray lines width and shift
- Cosmic Rays or Turbulence can Suppress Cooling Flows (Where Thermal Heating or Momentum Injection Fail)
- Large-Scale Structure Formation: from the first non-linear objects to massive galaxy clusters
- Suzaku Observations of the Centaurus Cluster: Absence of Bulk Motions in the Intracluster Medium
- Hydrodynamical adaptive mesh refinement simulations of turbulent flows - I. Substructure in a wind
- Models of magnetic-field evolution and effective viscosity in weakly collisional extragalactic plasmas
- The Mixing and Transport Properties of the Intra Cluster Medium: a numerical study using tracers particles
- Can giant radio halos probe the merging rate of galaxy clusters?
- The Megaparsec-scale Gas-sloshing Spiral in the Remnant Cool Core Cluster Abell 1763
- Effect of Helium Sedimentation on X-ray Measurements of Galaxy Clusters
- The entropy core in galaxy clusters: numerical and physical effects in cosmological grid simulations
- Search for gas bulk motions in eight nearby clusters of galaxies with Suzaku
- Hot and Turbulent Gas in Clusters
- Suzaku Observations of Iron K-lines from the Intracluster Medium of the Coma Cluster
- Effects of multiple-scale driving on turbulence statistics
- Dynamical heating of the X-ray emitting intracluster medium: the roles of merger shocks and turbulence dissipation
- The Heated Core of the Radio-Quiet Galaxy Cluster A644
- Surface brightness discontinuities in radio halos. Insights from the MeerKAT Galaxy Cluster Legacy Survey
- X-ray Spectroscopy of Clusters of Galaxies
- Turbulence decay in the density-stratified intracluster medium
- Properties and Spectral Behaviour of Cluster Radio Halos
- Measuring Transverse Motions for Nearby Galaxy Clusters
- Properties of Polarized Synchrotron Emission from Fluctuation Dynamo Action -- II. Effects of Turbulence Driving in the ICM and Beam Smoothing
- On the interpretation of XRISM X-ray measurements of turbulence in the intracluster medium: a comparison with cosmological simulations
- Merger-Driven Turbulence and Coherent Transport in the Intracluster Medium
- Magnetized Decaying Turbulence in the Weakly Compressible Taylor-Green Vortex