Galaxy Clusters, a Novel Look at Diffuse Baryons Withstanding Dark Matter Gravity
arXiv:0903.5224 · doi:10.1088/0004-637X/698/1/580
Abstract
[abridged] The equilibria of the intracluster plasma (ICP) and of the gravitationally dominant dark matter (DM) are governed by the hydrostatic and the Jeans equation. Jeans, with the DM `entropy' set to K ~ r^αand α~ 1.25 - 1.3 applying from groups to rich clusters, yields our radial α-profiles. In the ICP the entropy run k(r) is mainly shaped by shocks, as steadily set by supersonic accretion of gas at the cluster boundary, and intermittently driven from the center by merging events or by AGNs; the resulting equilibrium is described by the exact yet simple formalism constituting our ICP Supermodel. With a few parameters, this accurately represents the runs of density n(r) and temperature T(r) as required by recent X-ray data on surface brightness and spectroscopy for both cool core (CC) and non cool core (NCC) clusters; the former are marked by a middle temperature peak, whose location is predicted from rich clusters to groups. The Supermodel inversely links the inner runs of n(r) and T(r), and highlights their central scaling with entropy n_c ~ k_c^-1 and T_c ~ k_c^0.35, to yield radiative cooling times t_c ~ 0.3 (k_c/15 keV cm^2)^1.2 Gyr. We discuss the stability of the central values so focused either in CC and NCC clusters. From the Supermodel we derive as limiting cases the classic polytropic β-models, and the `mirror' model with T(r) ~ σ^2(r) suitable for NCC and CC clusters, respectively; these highlight how the ICP temperature T(r) tends to mirror the DM velocity dispersion σ^2(r) away from entropy injections. Finally, we discuss how the Supermodel connects information derived from X-ray and gravitational lensing observations.
13 pages, 8 figures, uses RevTeX4 + emulateapj.cls and apjfonts.sty. Typos corrected. Accepted by ApJ
References in corpus (20)
- Wilkinson Microwave Anisotropy Probe (WMAP) Three Year Results: Implications for Cosmology
- 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
- Radial temperature profiles for a large sample of galaxy clusters observed with XMM-Newton
- A universal density slope - velocity anisotropy relation for relaxed structures
- LoCuSS: Comparison of Observed X-ray and Lensing Galaxy Cluster Scaling Relations with Simulations
- Towards a Holistic View of the Heating and Cooling of the Intracluster Medium
- Modelling Shock Heating in Cluster Mergers: I. Moving Beyond the Spherical Accretion Model
- Mass and Gas Profiles in A1689: Joint X-ray and Lensing Analysis
- Thermal Balance in the Intracluster Medium: Is AGN Feedback Necessary?
- The dynamical structure of dark matter haloes
- Evolution of Phase-Space Density in Dark Matter Halos
- Suppressing cluster cooling flows by self-regulated heating from spatially distributed population of AGNs
- Entropy of gas and dark matter in galaxy clusters
- Measurement of the dark matter velocity anisotropy in galaxy clusters
- A GMRT multifrequency radio study of the isothermal core of the poor galaxy cluster AWM 4
- Structure and History of Dark Matter Halos Probed with Gravitational Lensing
- Measuring the dark matter velocity anisotropy in galaxy clusters
- Missing Baryons, from Clusters to Groups of Galaxies
Cited by in corpus (28)
- Suzaku Observation of Abell 1689: Anisotropic Temperature and Entropy Distributions Associated with the Large-Scale Structure
- Testing chameleon gravity with the Coma cluster
- An Analytic Model of the Physical Properties of Galaxy Clusters
- Quasisteady Configurations of Conductive Intracluster Media
- Probing the Astrophysics of Cluster Outskirts
- The cosmological analysis of X-ray cluster surveys: I- A new method for interpreting number counts
- Deconstructing Thermal Sunyaev-Zel'dovich - Gravitational Lensing Cross-Correlations: Implications for the Intracluster Medium
- Self-similarity of temperature profiles in distant galaxy clusters: the quest for a Universal law
- The entropy core in galaxy clusters: numerical and physical effects in cosmological grid simulations
- Non Thermal Support for the Outer Intracluster Medium
- A Grand Design for Galaxy Clusters: Connections and Predictions
- The Astrophysics of the Intracluster Plasma
- Supermodel Analysis of Galaxy Clusters
- Entropy Flattening, Gas Clumping and Turbulence in Galaxy Clusters
- Turbulence in the SuperModel: Mass Reconstruction with Nonthermal Pressure for Abell 1835
- The temperature of hot gas in galaxies and clusters: baryons dancing to the tune of dark matter
- The Planck Sunyaev-Zel'dovich vs. the X-ray View of the Coma Cluster
- Supermodel Analysis of the Hard X-Ray Excess in the Coma Cluster
- Nonthermal Pressure in the Outskirts of Abell 2142
- The Intracluster Plasma: a Universal Pressure Profile?
- Narrow Band X-ray Photometry as a Tool for Studying Galaxy and Cluster Mass Distributions
- Dark Matter Halos: The Dynamical Basis of Effective Empirical Models
- 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
- The Intragroup versus the Intracluster Medium
- Gamma Rays from Annihilations at the Galactic Center in a Physical Dark Matter Distribution
- SuperModel Predictions in the Outskirts of the Galaxy Cluster Zwicky 3146
- Probing the evolution of galaxy clusters with the SZ Effect