CNO enrichment by rotating AGB stars in globular clusters
arXiv:0907.5200 · doi:10.1051/0004-6361/200911822
Abstract
AGB stars have long been held responsible for the important star-to-star variations in light elements observed in Galactic globular clusters. We analyse the main impacts of a first generation of rotating intermediate-mass stars on the chemical properties of second-generation globular cluster stars. The rotating models were computed without magnetic fields and without the effects of internal gravity waves. They account for the transports by meridional currents and turbulence. We computed the evolution of both standard and rotating stellar models with initial masses between 2.5 and 8 Msun within the metallicity range covered by Galactic globular clusters. During central He-burning, rotational mixing transports fresh CO-rich material from the core towards the hydrogen-burning shell, leading to the production of primary 14N. In stars more massive than M > 4 Msun, the convective envelope reaches this reservoir during the second dredge-up episode, resulting in a large increase in the total C+N+O content at the stellar surface and in the stellar wind. The corresponding pollution depends on the initial metallicity. At low- and intermediate-metallicity, it is at odds with the constancy of C+N+O observed among globular cluster low-mass stars. With the given input physics, our models suggest that massive rotating AGB stars have not shaped the abundance patterns observed in low- and intermediate-metallicity globular clusters. Our non-rotating models, on the other hands, do not predict surface C+N+O enhancements, hence are in a better position as sources of the chemical anomalies in globular clusters showing the constancy of the C+N+O. However at the moment, there is no reason to think that intermediate mass stars were not rotating.
Accepted in Astronomy and Astrophysics, 7 pages, 3 figures
References in corpus (20)
- The ACS Survey of Galactic Globular Clusters. III. The Double Subgiant Branch of NGC 1851
- On magnetic instabilities and dynamo action in stellar radiation zones
- On the self-enrichment scenario of galactic globular clusters: Constraints on the IMF
- The VLT-FLAMES survey of massive stars: rotation and nitrogen enrichment as the key to understanding massive star evolution
- A strong case for fast stellar rotation at very low metallicities
- The VLT-FLAMES survey of massive stars: atmospheric parameters and rotational velocity distributions for B-type stars in the Magellanic Clouds
- Rotational mixing in low-mass stars II. Self-consistent models of Pop II RGB stars
- The double Subgiant Branch of NGC 1851: the role of the CNO abundance
- White dwarf spins from low mass stellar evolution models
- Light nuclei in galactic globular clusters : constraints on the self-enrichment scenario from nucleosynthesis
- A large C+N+O abundance spread in giant stars of the globular cluster NGC 1851
- Diagnoses to unravel secular hydrodynamical processes in rotating main sequence stars
- Rotational Velocities For B0-B3 Stars in 7 Young Clusters: Further Study of the Relationship between Rotation Speed and Density in Star-Forming Regions
- A new imprint of fast rotators: low 12C/13C ratios in extremely metal-poor halo stars
- On the Origin of the High Helium Sequence in Centauri
- Origin of Abundance Inhomogeneity in Globular Clusters
- Fe and Al Abundances for 180 Red Giants in the Globular Cluster Omega Centauri (NGC 5139)
- The self-enrichment scenario in intermediate metallicity globular clusters
- Chemical abundances in giants stars of the tidally disrupted globular cluster NGC 6712 from high-resolution infrared spectroscopy
- The basic role of magnetic field in stellar evolution
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- A Survey of CN and CH Variations in Galactic Globular Clusters from SDSS Spectroscopy
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