The oxygen vs. sodium (anti)correlation(s) in omega Cen
arXiv:1105.0366 · doi:10.1088/0004-637X/736/1/5
Abstract
Recent exam of large samples of omega Cen giants shows that it shares with mono-metallic globular clusters the presence of the sodium versus oxygen anticorrelation, within each subset of stars with iron content in the range -1.9<~[Fe/H]<~-1.3. These findings suggest that, while the second generation formation history in omega Cen is more complex than that of mono-metallic clusters, it shares some key steps with those simpler cluster. In addition, the giants in the range -1.3<[Fe/H]<~-0.7 show a direct O--Na correlation, at moderately low O, but Na up to 20 times solar. These peculiar Na abundances are not shared by stars in other environments often assumed to undergo a similar chemical evolution, such as in the field of the Sagittarius dwarf galaxy. These O and Na abundances match well the yields of the massive asymptotic giant branch stars (AGB) in the same range of metallicity, suggesting that the stars at [Fe/H]>-1.3 in omega Cen are likely to have formed directly from the pure ejecta of massive AGBs of the same metallicities. This is possible if the massive AGBs of [Fe/H]>-1.3 in the progenitor system evolve when all the pristine gas surrounding the cluster has been exhausted by the previous star formation events, or the proto--cluster interaction with the Galaxy caused the loss of a significant fraction of its mass, or of its dark matter halo, and the supernova ejecta have been able to clear the gas out of the system. The absence of dilution in the metal richer populations lends further support to a scenario of the formation of second generation stars in cooling flows from massive AGB progenitors. We suggest that the entire formation of omega Cen took place in a few 10^8yr, and discuss the problem of a prompt formation of s--process elements.
The Astrophysical Journal, in press
References in corpus (25)
- Fast rotating massive stars and the origin of the abundance patterns in galactic globular clusters
- Formation and Dynamical Evolution of Multiple Stellar Generations in Globular Clusters
- Rates and properties of type Ia supernovae as a function of mass and star-formation in their host galaxies
- Stellar Models and Yields of Asymptotic Giant Branch Stars
- On the self-enrichment scenario of galactic globular clusters: Constraints on the IMF
- The exotic chemical composition of the Sagittarius dwarf Spheroidal galaxy
- The s process in massive stars at low metallicity. Effect of primary N14 from fast rotating stars
- Origin of multiple stellar populations in globular clusters and their helium enrichment
- An abundance analysis of bright giants in the globular cluster NGC 1851
- Sodium-oxygen anticorrelation and neutron capture elements in Omega Centauri stellar populations
- s-Process Nucleosynthesis in Advanced Burning Phases of Massive Stars
- Secondary star formation within massive star clusters: Origin of multiple stellar populations in globular clusters
- A model for the Globular Cluster extreme anomalies
- Origin of Abundance Inhomogeneity in Globular Clusters
- Tracing the evolution of NGC6397 through the chemical composition of its stellar populations
- Star formation feedback and metal enrichment by SN Ia and SN II in dwarf spheroidal galaxies: the case of Draco
- Fe and Al Abundances for 180 Red Giants in the Globular Cluster Omega Centauri (NGC 5139)
- The Chemical Evolution of Helium in Globular Clusters: Implications for the Self-Pollution Scenario
- NGC 2419: a large and extreme second generation in a currently undisturbed cluster
- The chemical evolution of Omega Centauri's progenitor system
- Li - O anti-correlation in NGC 6752: evidence for Li-enriched polluting gas
- Modeling the chemical evolution of Omega Centauri using three-dimensional hydrodynamical simulations
- Testing the AGB Scenario as the Origin of the Extreme-Helium Population in omega Centauri
- Direct photon calculations in heavy-ion collisions at s(NN)**1/2 = 62.4 - 200 AGeV in a (3+1) dimensional hybrid approach
- Convective overshooting and production of s-nuclei in massive stars during their core He-burning phase
Cited by in corpus (35)
- Multiple populations in globular clusters. Lessons learned from the Milky Way globular clusters
- Multiple Stellar Populations in Globular Clusters
- Evidence for Two Early Accretion Events That Built the Milky Way Stellar Halo
- The Hubble Space Telescope UV Legacy Survey of Galactic Globular Clusters. V. Constraints on Formation Scenarios
- A unique model for the variety of multiple populations formation(s) in globular clusters: a temporal sequence
- Multiple stellar populations in the globular cluster NGC 1851
- Iron and s-elements abundance variations in NGC5286: comparison with anomalous globular clusters and Milky Way satellites
- The Hubble Space Telescope UV Legacy Survey of Galactic Globular Clusters. II. The seven stellar populations of NGC7089 (M2)
- The Hubble Space Telescope UV Legacy Survey of Galactic Globular Clusters. XIX. A Chemical Tagging of the Multiple Stellar Populations Over the Chromosome Maps
- Super and massive AGB stars - III. Nucleosynthesis in metal-poor and very metal-poor stars - Z=0.001 and 0.0001
- The C+N+O abundance of Omega Centauri giant stars: implications on the chemical enrichment scenario and the relative ages of different stellar populations
- Oxygen abundances in low- and high-alpha field halo stars and the discovery of two field stars born in globular clusters
- The double sub-giant branch of NGC 6656 (M22): a chemical characterization
- The extended Main Sequence Turn Off cluster NGC1856: rotational evolution in a coeval stellar ensemble
- Star Formation Histories of Globular Clusters with Multiple Populations. I. ω Cen, M22, and NGC 1851
- Formation of Multiple Populations in Globular Clusters: Another Possible Scenario
- Lithium and sodium in the globular cluster M4. Detection of a Li-rich dwarf star: preservation or pollution?
- The HST Large Program on Omega Centauri. I. Multiple stellar populations at the bottom of the main sequence probed in NIR-Optical
- Characterizing the Heavy Elements in Globular Cluster M22 and an Empirical s-process Abundance Distribution Derived from the Two Stellar Groups
- The mosaic multiple stellar populations in Centauri : the Horizontal Branch and the Main Sequence
- C and N abundances of MS and SGB stars in NGC 1851
- Nucleosynthesis in helium-enriched asymptotic giant branch models: Implications for Heavy Element Enrichment in Omega Centauri
- Magnesium Isotope Ratios in omega Centauri Red Giants
- Chemical enrichment mechanisms in Omega Centauri: clues from neutron-capture elements
- The Most Metal-poor Stars in Omega Centauri (NGC 5139)
- From the CMD of Omega Centauri and (super-)AGB stellar models to a Galactic plane passage gas purging chemical evolution scenario
- Carbon and nitrogen abundances of stellar populations in the globular cluster M 2
- Spectral matching for abundances and clustering analysis of stars on the giant branches of ω Centauri
- On the origin of the gamma-ray emission from Omega Centauri: Milisecond pulsars and dark matter annihilation
- High Resolution Spectroscopic Abundances of Red Giant Branch Stars in NGC 6681
- Stellar populations in Centauri: a multivariate analysis
- Spectral matching for abundances of 848 stars of the giant branches of the globular cluster ω Centauri
- A new formation model for omega Centauri: the crossroad of astrophysical processes
- Constraining the non-gravitational scattering of baryons and dark matter with early cosmic structure formation
- Dating N loud AGNs at high redshift: GS3073 as a snapshot of wCen like evolution of a nuclear star cluster