The evolution of galaxy groups and of galaxies therein
arXiv:astro-ph/0607482 · doi:10.1007/978-3-540-71173-5_35
Abstract
Properties of groups of galaxies depend sensitively on the algorithm for group selection, and even the most recent catalogs of groups built from redshift-space selection should suffer from projections and infalling galaxies. The cosmo-dynamical evolution of groups from initial Hubble expansion to collapse and virialization leads to a fundamental track (FT) in virial-theorem-M/L vs crossing time. The increased rates of mergers, both direct and after dynamical friction, in groups relative to clusters, explain the higher fraction of elliptical galaxies at given local number density in X-ray selected groups, relative to clusters, even when the hierarchical evolution of groups is considered. Galaxies falling into groups and clusters should later travel outwards to typically 2 virial radii, which is somewhat less than the outermost radius where observed galaxy star formation efficiencies are enhanced relative to field galaxies of same morphological type. An ongoing analysis of the internal kinematics of X-ray selected groups suggests that the radial profiles of line of sight velocity dispersion are consistent with isotropic NFW distributions for the total mass density, with higher (lower) concentrations than LambdaCDM predictions in groups of high (low) mass. The critical mass, at M200 ~ 10^13 M_sun is consistent with possible breaks in the X-ray luminosity-temperature and Fundamental Plane relations. The internal kinematics of groups indicate that the M-T relation of groups should agree with that extrapolated from clusters with no break at the group scale. The analyses of observed velocity dispersion profiles and of the FT both suggest that low velocity dispersion groups (compact and loose, X-ray emitting or undetected) are quite contaminated by chance projections.
Invited review, ESO workshop "Groups of Galaxies in the Nearby Universe", held in Santiago, Chile, 5-9 December 2005, ed. I. Saviane, V. Ivanov & J. Borissova, 16 pages
References in corpus (2)
Cited by in corpus (20)
- A Cosmological Framework for the Co-Evolution of Quasars, Supermassive Black Holes, and Elliptical Galaxies: I. Galaxy Mergers & Quasar Activity
- A Cosmological Framework for the Co-Evolution of Quasars, Supermassive Black Holes, and Elliptical Galaxies: II. Formation of Red Ellipticals
- Dissipation and Extra Light in Galactic Nuclei: IV. Evolution in the Scaling Relations of Spheroids
- The HI content of early-type galaxies from the ALFALFA survey. II. The case of low density environments
- LoTSS jellyfish galaxies: II. Ram pressure stripping in groups versus clusters
- Luminosity function of galaxies in groups in the SDSS DR7: the dependence on mass, environment and galaxy type
- SPIDER IX - Classifying Galaxy Groups according to their Velocity Distribution
- The Fornax Deep Survey with VST. X. The assembly history of the bright galaxies and intra-group light in the Fornax A subgroup
- Hot and Cold Galactic Gas in the NGC 2563 Galaxy Group
- Gravitational lensing and dynamics in SL2S\,J02140-0535: Probing the mass out to large radius
- Evolution of compact and fossil groups of galaxies from semi-analytical models of galaxy formation
- The Variation of the Galaxy Luminosity Function with Group Properties
- Compact Groups of Galaxies in Sloan Digital Sky Survey and LAMOST Spectral Survey. II. Dynamical Properties of Isolated and Embedded Groups
- The Properties of the Heterogeneous Shakhbazyan Groups of Galaxies in the SDSS
- SARCS strong lensing galaxy groups: I - optical, weak lensing, and scaling laws
- Photometric study of the IC 65 group of galaxies
- The Compactness of Galaxy Groups in the Sloan Digital Sky Survey
- Galaxy distribution and evolution around a sample of 2dF groups
- Studying the dwarf galaxies in nearby groups of galaxies: spectroscopic and photometric data
- A New Window of Exploration in the Mass Spectrum: Strong Lensing by Galaxy Groups in the SL2S