The Dynamical Origin of Early-Type Dwarfs in Galaxy Clusters: A Theoretical Investigation
arXiv:1412.2431 · doi:10.1093/mnras/stu2761
Abstract
Observations of early-type dwarf galaxies in clusters often show that cluster dwarf members have significantly higher velocities and less symmetric distributions than cluster giant ellipticals, suggesting that these dwarfs are recently accreted galaxies, possibly from an infalling group. We use a series of -body simulations, exploring a parameter space of groups falling into clusters, to study the observed velocity distributions of the infall components along various lines of sight. We show that, as viewed along a line of sight parallel to the group's infall direction, there is a significant peculiar velocity boost during the pericentric passage of the group, and an increase in velocity dispersion that persists for many Gyr after the merger. The remnants of the infalling group, however, do not form a spatially distinct system -- consistent with recent observations of dwarf galaxies in the Virgo and Fornax clusters. This velocity signature is completely absent when viewed along a direction perpendicular to the merger. Additionally, the phase-space distribution of radial velocity along the infall direction versus cluster-centric radius reveals the separate dynamical evolution of the group's central core and outer halo, including the presence of infalling remnants outside the escape velocity envelope of the system. The distinct signature in velocity space of an infalling group's galaxies can therefore prove important in understanding the dynamical history of clusters and their dwarfs. Our results suggest that dwarf galaxies, being insensitive to dynamical friction, are excellent probes of their host clusters' dynamical histories.
Accepted to MNRAS. 17 pages, 12 figures
References in corpus (9)
- Galaxy Groups in the SDSS DR4: II. halo occupation statistics
- A fitting formula for the merger timescale of galaxies in hierarchical clustering
- A Direct Multigrid Poisson Solver for Oct-Tree Adaptive Meshes
- The distribution function of dark matter in massive haloes
- CLASH-VLT: The stellar mass function and stellar mass density profile of the z=0.44 cluster of galaxies MACS J1206.2-0847
- The Faint End of the Luminosity Function in the Core of the Coma Cluster
- Simulating the evolution of disc galaxies in a group environment. II. The influence of close-encounters between galaxies
- Dwarf galaxies in the Perseus Cluster: further evidence for a disc origin for dwarf ellipticals
- Stellar age versus mass of early-type galaxies in the Virgo Cluster
Cited by in corpus (11)
- The hELENa project - I. Stellar populations of early-type galaxies linked with local environment and galaxy mass
- Accretion of Galaxy Groups into Galaxy Clusters
- Investigating the Relation between Galaxy Properties and the Gaussianity of the Velocity Distribution of Groups and Clusters
- The Three Hundred project: Galaxy groups do not survive cluster infall
- On the accretion of a new group of galaxies onto Virgo: I. Internal kinematics of nine in-falling dEs
- On the accretion of a new group of galaxies onto Virgo: II. The effect of pre-processing on the stellar population content of dEs
- A Catalog of Galaxies in the Direction of the Perseus Cluster
- Galaxy Evolution in the Cluster Abell 85: New Insights from the Dwarf Population
- Accretion processes in the galaxy cluster Hydra A/Abell 780
- Optical/X-ray/radio view of Abell 1213: A galaxy cluster with anomalous diffuse radio emission
- Tidal Grinding of Dwarf Galaxies in Cluster Environments