The ages of Galactic globular clusters in the context of self-enrichment
arXiv:0812.2912 · doi:10.1017/S1743921309031913
Abstract
A significant fraction of stars in globular clusters (about 70%-85%) exhibit peculiar chemical patterns with strong abundance variations in light elements along with constant abundances in heavy elements. These abundance anomalies can be created in the H-burning core of a first generation of fast rotating massive stars and the corresponding elements are convoyed to the stellar surface thanks to rotational induced mixing. If the rotation of the stars is fast enough this matter is ejected at low velocity through a mechanical wind at the equator. It then pollutes the ISM from which a second generation of chemically anomalous stars can be formed. The proportion of anomalous to normal star observed today depends on at least two quantities : (1) the number of polluter stars; (2) the dynamical history of the cluster which may lose during its lifetime first and second generation stars in different proportions. Here we estimate these proportions based on dynamical models for globular clusters. When internal dynamical evolution and dissolution due to tidal forces are accounted for, starting from an initial fraction of anomalous stars of 10% produces a present day fraction of about 25%, still too small with respect to the observed 70-85%. In case gas expulsion by supernovae is accounted for, much higher fraction is expected to be produced. In this paper we also address the question of the evolution of the second generation stars that are He-rich, and deduce consequences for the age determination of globular clusters.
8 pages, 5 figures, IAU Symp. 258, D. Soderblom et al. eds
References in corpus (13)
- Fast rotating massive stars and the origin of the abundance patterns in galactic globular clusters
- A Triple Main Sequence in the Globular Cluster NGC 2808
- Metallicities on the Double Main Sequence of omega Centauri Imply Large Helium Enhancement
- A comprehensive set of simulations studying the influence of gas expulsion on star cluster evolution
- Be-star rotation: how close to critical?
- The ACS Survey of Galactic Globular Clusters. III. The Double Subgiant Branch of NGC 1851
- On the self-enrichment scenario of galactic globular clusters: Constraints on the IMF
- Origin of the abundance patterns in Galactic globular clusters: constraints on dynamical and chemical properties of globular clusters
- NGC 6441: another indication for a very high helium content in Globular Cluster stars
- Why haven't loose globular clusters collapsed yet?
- The influence of gas expulsion and initial mass-segregation on the stellar mass-function of globular star clusters
- Helium self--enrichment and the second parameter problem in M3 and M13
- Stellar Cluster Fiducial Sequences with the Advanced Camera for Surveys
Cited by in corpus (4)
- Multiple populations in globular clusters. Lessons learned from the Milky Way globular clusters
- Intrinsic iron spread and a new metallicity scale for Globular Clusters
- Properties of stellar generations in Globular Clusters and relations with global parameters
- Are C-rich ultra iron poor stars also He-rich?