The Astrophysics of the Intracluster Plasma
arXiv:1308.6673 · doi:10.1016/j.physrep.2013.08.001
Abstract
[Abridged] Since 1971 observations in X rays of thousands galaxy clusters have uncovered huge amounts of hot baryons filling up the deep gravitational potential wells provided by dark matter (DM) halos with sizes of millions light-years and masses of some 10^15 M_sun. At temperatures T~10^8 K and with average densities of n~1 particle per liter, such baryons add up to some 10^14 M_sun. With the neutralizing electrons, they constitute the best proton-electron plasma in the Universe (Intra Cluster Plasma, ICP). A key physical feature of the ICP is constituted by its good local Thermal equilibrium, and by its overall hydrostatic condition in the DM wells, modulated by entropy. The latter is set up in the cluster center by the initial halo collapse, and is progressively added at the outgrowing cluster boundary by standing shocks in the supersonic flow of intergalactic gas into the DM wells. We review these entropy-based models and discuss their outcomes and predictions concerning the ICP observables in X rays and in microwaves. The results provide a baseline for disentangling a number of additional and intriguing physical processes superposed to the general equilibrium. We cover: the central entropy erosion produced by radiative cooling vs. the intermittent energy inputs mainly due to active galactic nuclei and mergers; outer turbulent support linked with weakening shocks and decreasing inflow through the virial boundary, causing reduced entropy production; the development from high to low entropy levels throughout a typical cluster; perturbations of the equilibrium up to outright disruption due to deep impacts of infalling galaxy groups or collisions with comparable companion clusters; relativistic energy distributions of electrons accelerated during such events, producing extended radio emission by synchrotron radiation, and contributing to non-thermal pressure support for the ICP.
62 pages, 13 figures, 1 table. Accepted by Physics Reports
References in corpus (26)
- A direct empirical proof of the existence of dark matter
- 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
- A Catalog of Galaxy Clusters Observed by XMM-Newton
- Baryons at the Edge of the X-ray Brightest Galaxy Cluster
- Revealing the properties of dark matter in the merging cluster MACSJ0025.4-1222
- Total mass biases in X-ray galaxy clusters
- Gravitational Quenching in Massive Galaxies and Clusters by Clumpy Accretion
- Shock Waves in Eulerian Cosmological Simulations: Main Properties and Acceleration of Cosmic Rays
- The growth of dark matter halos: evidence for significant smooth accretion
- Towards a Holistic View of the Heating and Cooling of the Intracluster Medium
- A New Look at Massive Clusters: weak lensing constraints on the triaxial dark matter halos of Abell 1689, Abell 1835, & Abell 2204
- Chandra observation of two shock fronts in the merging galaxy cluster Abell 2146
- Gamma rays from clusters of galaxies
- Physical viscosity in smoothed particle hydrodynamics simulations of galaxy clusters
- Modelling Shock Heating in Cluster Mergers: I. Moving Beyond the Spherical Accretion Model
- X-ray Substructure Studies of Four Galaxy Clusters using XMM-Newton Data
- An improved deprojection and PSF-deconvolution technique for galaxy-cluster X-ray surface-brightness profiles
- Joint deprojection of Sunyaev-Zeldovich and X-ray images of galaxy clusters
- Bias from gas inhomogeneities in the pressure profiles as measured from X-ray and SZ observations
- Entropy of gas and dark matter in galaxy clusters
- Self-Similar Spherical Collapse with Tidal Torque
- High-Redshift Cool-Core Galaxy Clusters Detected via the Sunyaev--Zel'dovich Effect in the South Pole Telescope Survey
- Structure and History of Dark Matter Halos Probed with Gravitational Lensing
- Measuring the dark matter velocity anisotropy in galaxy clusters
Cited by in corpus (15)
- Galaxy Evolution in the Radio Band: The Role of Starforming Galaxies and Active Galactic Nuclei
- Constraining the efficiency of cosmic ray acceleration by cluster shocks
- Shocks and non-thermal particles in clusters of galaxies
- Entropy Flattening, Gas Clumping and Turbulence in Galaxy Clusters
- Dust in Clusters of Galaxies
- Galaxy clusters at z~1 imaged by ALMA with the Sunyaev-Zel'dovich effect
- SuperModel Analysis of Abell 1246 and J255: on the Evolution of Galaxy Clusters from High to Low Entropy States
- A Dynamically Driven, Universal Thermal Profile of Galaxy Groups and Clusters
- Galactic Traversability: A New Concept for Extragalactic SETI
- Results from the SuperModel Analysis of the X-COP Galaxy Clusters Sample
- Breaks in the X-ray spectra of high redshift blazars and the intervening medium
- The flat entropy profile at the outskirts of the Abell 2244 galaxy cluster
- The Intragroup versus the Intracluster Medium
- Probing the evolution of galaxy clusters with the SZ Effect
- Secondary CMB anisotropies from magnetized halos --I: Power spectra of the Faraday rotation angle and conversion rate