Star Formation History of Omega Centauri Imprinted in Elemental Abundance Patterns
arXiv:astro-ph/0302300 · doi:10.1086/375023
Abstract
The star formation history of the globular cluster Omega Centauri is investigated in the context of an inhomogeneous chemical evolution model in which supernovae induce star formation. The proposed model explains recent observations for Omega Cen stars, and divides star formation into three epochs. At the end of the first epoch, ~ 70% of the gas was expelled by supernovae. AGB stars then supplied s-process elements to the remaining gas during the first interval of ~300 Myr. This explains the observed sudden increase in Ba/Fe ratios in Omega Cen stars at [Fe/H] ~ -1.6. Supernovae at the end of the second epoch were unable to expel the gas. Eventually, Type Ia supernovae initiated supernova-induced star formation, and remaining gas was stripped when the cluster passed through the newly formed disk of the Milky Way. The formation of Omega Cen is also discussed in the framework of globular cluster formation triggered by cloud-cloud collisions. In this scenario, the relative velocity of clouds in the collision determines the later chemical evolution in the clusters. A head-on collision of proto-cluster clouds with a low relative velocity would have converted less than 1% of gas into stars and promoted the subsequent chemical evolution by supernova-driven star formation. This is consistent with present observed form of Omega Cen. In contrast, the other Galactic globular clusters are expected to have formed from more intense head-on collisions, and the resultant clouds would have been too thin for supernovae to accumulate enough gas to form the next generation of stars. This explains the absence of chemical evolution in these other globular clusters.
7 pages including 3 figures, to appear in ApJ
References in corpus (4)
- The Unique History of the Globular Cluster Omega Centauri
- High resolution spectroscopy of metal rich giants in omega Cen: first indication of SNe Ia enrichment
- Discovery of an accreted stellar system within the globular cluster omega Centauri
- History of Milky Way Dwarf Spheroidal Galaxies Imprinted on Abundance Patterns of Neutron-Capture Elements
Cited by in corpus (13)
- Chemical Abundances for 855 Giants in the Globular Cluster Omega Centauri (NGC 5139)
- Fe and Al Abundances for 180 Red Giants in the Globular Cluster Omega Centauri (NGC 5139)
- The Age and Metallicity Relation of Omega Centauri
- The chemical evolution of Omega Centauri's progenitor system
- 2MASS Studies of Differential Reddening Across Three Massive Globular Clusters
- V453 Oph: a s-process enriched, but carbon-deficient RV Tauri star of low intrinsic metallicity
- Chemical Compositions of Field and Globular Cluster RR~Lyrae Stars: II. omega Centauri
- Evidence for metallicity spreads in three massive M31 globular clusters
- Surface pollution of main-sequence stars through encounters with AGB ejecta in omega Centauri
- Stellar populations in Centauri: a multivariate analysis
- A new formation model for omega Centauri: the crossroad of astrophysical processes
- A comparison of abundance analyses of first generation stars in multiple populations in 47 Tuc and NGC 3201
- The Multiplicity of Main Sequence Turnoffs in Globular Clusters