Internal Cluster Structure
arXiv:1303.3285 · doi:10.1007/s11214-013-9977-6
Abstract
The core structure of galaxy clusters is fundamentally important. Even though self-gravitating systems have no stable equilibrium state due to their negative heat capacity, numerical simulations find density profiles which are universal in the sense that they are fairly flat within a scale radius and gradually steepen farther outward, asymptotically approaching a logarithmic slope of near the virial radius. We argue that the reason for the formation of this profile is not satisfactorily understood. The ratio between the virial radius and the scale radius, the so-called concentration, is found in simulations to be closely related to the mass and the redshift and low for cluster-sized haloes, but observed to be substantially higher at least in a subset of observed clusters. Haloes formed from cold dark matter should furthermore be richly substructured. We review theoretical and observational aspects of cluster cores here, discuss modifications by baryonic physics and observables that can provide better insight into the internal structure of clusters.
Review paper. Accepted for publication in Space Science Reviews (eds: S. Ettori, M. Meneghetti). This is a product of the work done by an international team at the International Space Science Institute (ISSI) in Bern on "Astrophysics and Cosmology with Galaxy Clusters: the X-ray and lensing view"
References in corpus (20)
- Concentration, Spin and Shape of Dark Matter Haloes as a Function of the Cosmological Model: WMAP1, WMAP3 and WMAP5 results
- Chandra temperature profiles for a sample of nearby relaxed galaxy clusters
- The redshift dependence of the structure of massive LCDM halos
- Strong and weak lensing united III: Measuring the mass distribution of the merging galaxy cluster 1E0657-56
- The Density Profiles of Massive, Relaxed Galaxy Clusters. II. Separating Luminous and Dark Matter in Cluster Cores
- CIRS: Cluster Infall Regions in the Sloan Digital Sky Survey I. Infall Patterns and Mass Profiles
- Temperature profiles of a representative sample of nearby X-ray galaxy clusters
- Probing the Dark Matter and Gas Fraction in Relaxed Galaxy Groups with X-ray observations from Chandra and XMM
- The dark matter halos of massive, relaxed galaxy clusters observed with Chandra
- The Observed Concentration-Mass Relation for Galaxy Clusters
- The X-Ray Concentration-Virial Mass Relation
- Parametric Strong Gravitational Lensing Analysis of Abell 1689
- Combining Lens Distortion and Depletion to Map the Mass Distribution of A1689
- Strong Lensing in Abell 1703: Constraints on the Slope of the Inner Dark Matter Distribution
- The statistics of the subhalo abundance of dark matter haloes
- Galaxy cluster mass profiles
- Weak lensing goes bananas: What flexion really measures
- A Method for Weak Lensing Flexion Analysis by the HOLICs Moment Approach
- Thermal and non-thermal traces of AGN feedback: results from cosmological AMR simulations
- Secondary infall and dark matter haloes
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- Cosmic Structure Formation with Kinetic Field Theory
- Statistical uncertainties and systematic errors in weak lensing mass estimates of galaxy clusters
- SARCS strong-lensing galaxy groups: II - mass-concentration relation and strong-lensing bias
- Strong lensing in RX J1347.5-1145 revisited
- Kinetic Field Theory for Cosmic Structure Formation
- Triaxiality in galaxy clusters: Mass versus Potential reconstructions