Non Thermal Support for the Outer Intracluster Medium
arXiv:1010.4415 · doi:10.1051/0004-6361/201015390
Abstract
We submit that non thermalized support for the outer intracluster medium in relaxed galaxy clusters is provided by turbulence, driven by inflows of intergalactic gas across the virial accretion shocks. We expect this component to increase briskly during the cluster development for z<1/2, due to three factors. First, the accretion rates of gas and dark matter subside, when they feed on the outer wings of the initial perturbations in the accelerating Universe. Second, the infall speeds decrease across the progressively shallower gravitational potential at the shock position. Third, the shocks eventually weaken, and leave less thermal energy to feed the intracluster entropy, but relatively more bulk energy to drive turbulence into the outskirts. The overall outcome from these factors is physically modeled and analytically computed; thus we ascertain how these concur in setting the equilibrium of the outer intracluster medium, and predict how the observables in X rays and microwaves are affected, so as to probe the development of outer turbulence over wide cluster samples. By the same token, we quantify the resulting negative bias to be expected in the total mass evaluated from X-ray measurements.
6 pages, 5 figures. Accepted by Astronomy and Astrophysics
References in corpus (17)
- Heating Hot Atmospheres with Active Galactic Nuclei
- Shocks and cold fronts in galaxy clusters
- Intracluster Medium Entropy Profiles for a Chandra Archival Sample of Galaxy Clusters
- Turbulence and Magnetic Fields in the Large Scale Structure of the Universe
- A Catalog of Galaxy Clusters Observed by XMM-Newton
- Compressible Turbulence in Galaxy Clusters: Physics and Stochastic Particle Re-acceleration
- Evidence for Non-Hydrostatic Gas from the Cluster X-ray to Lensing Mass Ratio
- Cosmological Shocks in Adaptive Mesh Refinement Simulations and the Acceleration of Cosmic Rays
- LoCuSS: A Comparison of Cluster Mass Measurements from XMM-Newton and Subaru - Testing Deviation from Hydrostatic Equilibrium and Non-Thermal Pressure Support
- Cosmic rays and Radio Halos in galaxy clusters : new constraints from radio observations
- The growth of dark matter halos: evidence for significant smooth accretion
- The intracluster magnetic field power spectrum in Abell 2255
- X-ray observations of the galaxy cluster PKS 0745-191: To the virial radius, and beyond
- Hydrodynamical adaptive mesh refinement simulations of turbulent flows - II. Cosmological simulations of galaxy clusters
- Exploring the Energetics of Intracluster Gas with a Simple and Accurate Model
- Modelling Shock Heating in Cluster Mergers: I. Moving Beyond the Spherical Accretion Model
- Active Galactic Nuclei: Sources for ultra high energy cosmic rays?
Cited by in corpus (23)
- CLASH-VLT: The mass, velocity-anisotropy, and pseudo-phase-space density profiles of the z=0.44 galaxy cluster MACS 1206.2-0847
- CLASH: Precise New Constraints on the Mass Profile of Abell 2261
- Turbulence in the ICM from mergers, cool-core sloshing and jets: results from a new multi-scale filtering approach
- LoCuSS: The Sunyaev-Zel'dovich Effect and Weak Lensing Mass Scaling Relation
- Turbulence production and turbulent pressure support in the intergalactic medium
- Thermodynamics of the Coma Cluster Outskirts
- Analytical model for non-thermal pressure in galaxy clusters
- Discovery of Megaparsec-Scale, Low Surface Brightness Nonthermal Emission in Merging Galaxy Clusters using the Green Bank Telescope
- Turbulent density and pressure fluctuations in the stratified intracluster medium
- Turbulence in stratified atmospheres: implications for the intracluster medium
- Adaptive mesh refinement simulations of a galaxy cluster merger - I. Resolving and modelling the turbulent flow in the cluster outskirts
- Constraints on the Mass, Concentration, and Nonthermal Pressure Support of Six CLASH Clusters from a Joint Analysis of X-ray, SZ, and Lensing Data
- The Astrophysics of the Intracluster Plasma
- A Grand Design for Galaxy Clusters: Connections and Predictions
- Supermodel Analysis of the Hard X-Ray Excess in the Coma Cluster
- Nonthermal Pressure in the Outskirts of Abell 2142
- Measuring the 3D shape of X-ray clusters
- CHEX-MATE: the intracluster medium entropy distribution in the gravity-dominated regime
- The Intracluster Plasma: a Universal Pressure Profile?
- SuperModel Analysis of Abell 1246 and J255: on the Evolution of Galaxy Clusters from High to Low Entropy States
- Results from the SuperModel Analysis of the X-COP Galaxy Clusters Sample
- SuperModel Predictions in the Outskirts of the Galaxy Cluster Zwicky 3146
- Probing the evolution of galaxy clusters with the SZ Effect