Origin of Abundance Inhomogeneity in Globular Clusters
arXiv:astro-ph/0702289 · doi:10.1111/j.1365-2966.2007.11606.x
Abstract
We numerically investigate abundance properties of the Galactic globular clusters (GCs) by adopting a new ``external pollution'' scenario. In this framework, GCs are assumed to originate in forming low-mass dwarfs embedded in dark matter subhalos at very high redshifts (z) and thus be chemically influenced by field AGB stars of the dwarfs during early GC formation processes. In this external pollution scenario, the ratio of the total mass of infalling gas to that of AGB ejecta during GC formation in a dwarf (s) and the time scale of gas infall (sigma_I) are the most important key parameters that can determine abundance properties of GCs. We mainly investigate the abundance inhomogeneity among light elements (e.g., C, N, O, Na, and Al) of stars in GCs by using the latest stellar yield models of metal-poor AGB stars with and without third dredge-up. Our principal results for the models with no third dredge-up, which are more consistent with observations, are as follows. Both [N/Fe] and [C/Fe] can be diverse among stars within a GC owing to chemical pollution from field AGB stars. [N/Fe] distributions in some GCs can clearly show bimodality whereas [C/Fe] is monomodal in most models. [N/Fe] distributions depend on s such that models with smaller (i.e., larger mass fraction of AGB ejecta used for GC formation) show the [N/Fe] bimodality more clearly. N-rich, C-poor stars in GCs also have higher He abundances owing to pollution from massive AGB stars with He-rich ejecta. The number fraction of He-rich stars (Y >0.30) is higher for the models with smaller s and shorter sigma_I for 3 < s <24 and 10^5 < sigma_I < 10^7 yr.Our models are in strong disagreement with the observed O-Na anticorrelation.
18 pages, 17 figures, accepted by MNRAS
References in corpus (9)
- The ACS Virgo Cluster Survey. VIII. The Nuclei of Early-Type Galaxies
- On the self-enrichment scenario of galactic globular clusters: Constraints on the IMF
- Deep Mixing of He-3: Reconciling Big Bang and Stellar Nucleosynthesis
- On the Origin of the High Helium Sequence in Centauri
- The Chemical Evolution of Helium in Globular Clusters: Implications for the Self-Pollution Scenario
- Heavy elements and chemical enrichment in globular clusters
- New Metallicities of RR Lyrae Stars in omega Centauri: Evidence for a Non He-Enhanced Metal-Intermediate Population
- Dissipative transformation of non-nucleated dwarf galaxies into nucleated systems
- Massive Young Stellar Objects in the Large Magellanic Cloud: water masers and ESO-VLT 3-4 micron spectroscopy
Cited by in corpus (27)
- Formation and Dynamical Evolution of Multiple Stellar Generations in Globular Clusters
- What is a globular cluster? An observational perspective
- The fraction of second generation stars in Globular Clusters from the analysis of the Horizontal Branch
- Super and massive AGB stars - III. Nucleosynthesis in metal-poor and very metal-poor stars - Z=0.001 and 0.0001
- A model for the Globular Cluster extreme anomalies
- Comparing CN and CH Line Strengths in a Homogeneous Spectroscopic Sample of 8 Galactic Globular Clusters
- The self-enrichment scenario in intermediate metallicity globular clusters
- The Chemical Evolution of Globular Clusters I. Reactive Elements and Non-Metals
- The chemical composition of red giants in 47 Tucanae I: Fundamental parameters and chemical abundance patterns
- Variations in the lithium abundances of turn off stars in the globular cluster 47 Tuc
- On the origin of double main-sequence turn-offs in star clusters of the Magellanic Clouds
- White-dwarf red-giant mergers, early-type R stars, J stars and lithium
- Multiple stellar populations and their evolution in globular clusters: A nucleosynthesis perspective
- The origin of discrete multiple stellar populations in globular clusters
- Globular cluster formation with multiple stellar populations: self-enrichment in fractal massive molecular clouds
- Formation of N-rich field stars in the high-density building blocks of the Galactic bulge
- Massive stars and globular cluster formation
- Evidence for metallicity spreads in three massive M31 globular clusters
- Formation of globular clusters with internal abundance spreads in r-process elements: strong evidence for prolonged star formation
- Testing the AGB Scenario as the Origin of the Extreme-Helium Population in omega Centauri
- Star formation within globular clusters:discrete multiple bursts and top-light mass functions
- Formation of the Galactic globular clusters with He-rich stars in low-mass halos virialized at high redshift
- The Carina Project VII: Towards the breaking of the age-metallicity degeneracy of red giant branch stars using the c_UBI index
- A new formation model for omega Centauri: the crossroad of astrophysical processes
- Abundance variations in the globular cluster M71 (NGC 6838)
- The impact of wind mass loss on nucleosynthesis and yields of very massive stars at low metallicity
- Globular cluster formation with multiple stellar populations: A single-binary composite scenario