Rapidly rotating second-generation progenitors for the blue hook stars of ω Cen
arXiv:1506.07463 · doi:10.1038/nature14516
Abstract
Horizontal Branch stars belong to an advanced stage in the evolution of the oldest stellar galactic population, occurring either as field halo stars or grouped in globular clusters. The discovery of multiple populations in these clusters, that were previously believed to have single populations gave rise to the currently accepted theory that the hottest horizontal branch members (the blue hook stars, which had late helium-core flash ignition, followed by deep mixing) are the progeny of a helium-rich "second generation" of stars. It is not known why such a supposedly rare event (a late flash followed by mixing) is so common that the blue hook of ω Cen contains \sim 30% of horizontal branch stars 10 , or why the blue hook luminosity range in this massive cluster cannot be reproduced by models. Here we report that the presence of helium core masses up to \sim 0.04 solar masses larger than the core mass resulting from evolution is required to solve the luminosity range problem. We model this by taking into account the dispersion in rotation rates achieved by the progenitors, whose premain sequence accretion disc suffered an early disruption in the dense environment of the cluster's central regions where second-generation stars form. Rotation may also account for frequent late-flash-mixing events in massive globular clusters.
44 pages, 8 figures, 2 tables in Nature, online june 22, 2015
References in corpus (12)
- Formation and Dynamical Evolution of Multiple Stellar Generations in Globular Clusters
- New Grids of ATLAS9 Model Atmospheres
- The Hubble Space Telescope UV Legacy Survey of Galactic Globular Clusters. I. Overview of the Project and Detection of Multiple Stellar Populations
- The fraction of second generation stars in Globular Clusters from the analysis of the Horizontal Branch
- Modeling He-rich subdwarfs through the hot-flasher Scenario
- NGC 6441: another indication for a very high helium content in Globular Cluster stars
- A model for the Globular Cluster extreme anomalies
- First full evolutionary computation of the He-flash induced mixing in Population II stars
- The Hottest Horizontal-Branch Stars in omega Centauri - Late Hot Flasher vs. Helium Enrichment
- The Horizontal Branch of NGC 1851: Constraints on the Cluster Subpopulations
- A Helium-Carbon Correlation on the Extreme Horizontal Branch in Centauri
- Modeling He-rich subdwarfs through the hot-flasher scenario (brief version)
Cited by in corpus (18)
- A Tale of Three Cities: OmegaCAM discovers multiple sequences in the color-magnitude diagram of the Orion Nebula Cluster
- Mass loss along the red giant branch in 46 Globular Clusters and their multiple populations
- On the timing properties of SAX J1808.4-3658 during its 2015 outburst
- A Chemical Composition Survey of the Iron-Complex Globular Cluster NGC 6273 (M 19)
- Four stellar populations and extreme helium variation in the massive outer-halo globular cluster NGC 2419
- Chromosome maps of Globular Clusters from wide-field ground-based photometry
- Is helium the key parameter in the extended color spread of the first generation stars in M3?
- The Hubble Space Telescope UV Legacy Survey of Galactic Globular Clusters -- XI. The horizontal branch in NGC\,6388 and NGC\,6441
- Mass loss of different stellar populations in Globular Clusters: the case of M4
- Multiple stellar populations in Asymptotic Giant Branch stars of Galactic Globular Clusters
- Star formation within globular clusters:discrete multiple bursts and top-light mass functions
- Asteroseismic signatures of the helium-core flash
- A possible formation channel for blue hook stars in globular cluster - II. Effects of metallicity, mass ratio, tidal enhancement efficiency and helium abundance
- HST observations of the globular cluster NGC 6402 (M14) and its peculiar multiple populations
- Critical Metallicity of Cool Supergiant Formation. I. Effects on Stellar Mass Loss and Feedback
- Apparent Trend of the Iron Abundance in NGC 3201: the Same Outcome with Different Data
- Globular cluster formation with multiple stellar populations: A single-binary composite scenario
- Hot subdwarfs from the surviving companions of the white dwarf + main-sequence channel of Type Ia supernovae