Galaxy mergers at high resolution: From elliptical galaxies to tidal dwarfs and globular clusters
arXiv:0809.1029 · doi:10.1002/asna.200811043
Abstract
Numerical simulations of galaxy mergers are a powerful tool to study these fundamental events in the hierarchical built-up of galaxies. Recent progress have been made owing to improved modeling, increased resolution and large statistical samples. We present here the highest-resolution models of mergers performed so far. The formation of a variety of substructures ranging from kinematically decoupled cores to globular-like clusters is directly resolved. In a resolution study, we show that the large-scale structure of elliptical-like merger remnants can be affected by the resolution, and a too modest resolution may affect the numerical predictions on the properties of major merger remnants: understanding precisely which kind of event or succession of events has formed the various types of elliptical galaxies remains an open challenge.
To be published in the proceedings of the "Galactic and Stellar Dynamics 2008" conference. 4 pages
References in corpus (8)
- The SAURON project -- IX. A kinematic classification for early-type galaxies
- Multiple minor mergers: formation of elliptical galaxies and constraints for the growth of spiral disks
- High-resolution simulations of galaxy mergers: Resolving globular cluster formation
- Are disk galaxies the progenitors of giant ellipticals?
- SAURON's Challenge for the Major Merger Scenario of Elliptical Galaxy Formation
- On the influence of ram-pressure stripping on interacting galaxies in clusters
- Triggering of merger-induced starbursts by the tidal field of galaxy groups and clusters
- Old stellar counter-rotating components in early-type galaxies from elliptical-spiral mergers