Cosmological formation and chemical evolution of an elliptical galaxy
arXiv:0902.2768 · doi:10.1051/0004-6361/200811379
Abstract
We aim at studying the effect of a cosmologically motivated gas infall law for the formation of a massive elliptical galaxy in order to understand its impact on the formation of the spheroids. We replace the empirical infall law of the model by Pipino & Matteucci with a cosmologically derived infall law for the formation of an elliptical galaxy. We constrast our predictions with observations. We also compare the obtained results with those of Pipino & Matteucci. We computed models with and without galactic winds: we found that models without wind predict a too large current SNIa rate. In particular, the cosmological model produces a current SNIa which is about ten times higher than the observed values. Moreover models without wind predict a large current SNII rate, too large even if compared with the recent GALEX data. The predicted SNII rate for the model with wind, on the other hand, is too low if compared with the star formation histories given by GALEX. Last but not least, the mean value for the [Mg/Fe] ratio in the dominant stellar population of the simulated galaxy, as predicted by the cosmological model, is too low if compared to observations. This is, a very important result indicating that the cosmological infall law is in contrast with the chemical evolution. A cosmologically derived infall law for an elliptical galaxy cannot reproduce all the chemical constraints given by the observations. The problem resides in the fact that the cosmologically derived infall law implies a slow gas accretion with consequent star formation rate active for a long period. In this situation low [Mg/Fe] ratios are produced for the dominant stellar population in a typical elliptical, at variance with observations.
8 pages, 6 figures, accepted for publication by A&A
References in corpus (13)
- The cosmological simulation code GADGET-2
- The epochs of early-type galaxy formation as a function of environment
- An Infrared Survey of Brightest Cluster Galaxies. II: Why are Some Brightest Cluster Galaxies Forming Stars?
- NOAO Fundamental Plane Survey -- II. Age and Metallicity along the Red Sequence
- New Constraints on the Star Formation Histories and Dust Attenuation of Galaxies in the Local Universe from GALEX
- Resurrecting the Red from the Dead: Optical Properties of BCGs in X-ray Luminous Clusters
- The metal enrichment of elliptical galaxies in hierarchical galaxy formation models
- The supernova rate in local galaxy clusters
- The UV colours of high-redshift early-type galaxies: evidence for recent star formation and stellar mass assembly over the last 8 billion years
- Star Formation Rates in Cooling Flow Clusters: A UV Pilot Study with Archival XMM-Newton Optical Monitor Data
- The chemical evolution of a Milky Way-like galaxy: the importance of a cosmologically motivated infall law
- Formation and evolution of early-type galaxies. II. Models with quasi-cosmological initial conditions
- The star formation histories of early-type galaxies: insights from the rest-frame ultra-violet
Cited by in corpus (8)
- The globular cluster system of NGC 1399 V. dynamics of the cluster system out to 80 kpc
- The Abundance Pattern in the Hot ISM of NGC 4472: Insights and Anomalies
- The two regimes of the cosmic sSFR evolution are due to spheroids and discs
- An In-Depth Study of the Abundance Pattern in the Hot Interstellar Medium in NGC 4649
- Near-infrared chemical abundances of stars in the Sculptor dwarf galaxy
- Colour gradients of high-redshift Early-Type Galaxies from hydrodynamical monolithic models
- Individual element sensitivity for stellar evolutionary isochrones
- Downsizing revised: Star formation timescales for elliptical galaxies with an environment-dependent IMF and number of SNIa