Multiple Main Sequence of Globular Clusters as a Result of Inhomogeneous Big Bang Nucleosynthesis
arXiv:1001.1790 · doi:10.1103/PhysRevD.81.043004
Abstract
A new mechanism for enhancing the helium abundance in the blue main sequence stars of omega Centauri and NGC 2808 is investigated. We suggest that helium enhancement was caused by the inhomogeneous big bang nucleosynthesis. Regions with extremely high baryon-to-photon ratios are assumed to be caused by the baryogenesis. Its mass scale is also assumed to be 10^6 Msun. An example of the mechanisms to realize these two things was already proposed as the Affleck-Dine baryogenesis. As the baryon-to-photon ratio becomes larger, the primordial helium abundance is enhanced. We calculated the big bang nucleosynthesis and found that there exists a parameter region yielding enough helium to account for the split of the main sequence in the aforementioned globular clusters while keeping the abundances of other elements compatible with observations. Our mechanism predicts that heavy elements with the mass number of around 100 is enhanced in the blue main sequence stars. We estimate the timescales of diffusion of the enhanced helium and mass accretion in several stages after the nucleosynthesis to investigate whether these processes diminish the enhancement of helium. We found that the diffusion does not influence the helium content. A cloud with a sufficiently large baryon-to-photon ratio to account for the multiple main sequence collapsed immediately after the recombination. Subsequently, the cloud accreted the ambient matter with the normal helium content. If the star formation occurred both in the collapsed core and the accreted envelope, then the resultant star cluster has a double main sequence.
7 pages, 2 figures, 2 tables, accepted by Physical Review D
References in corpus (15)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Likelihoods and Parameters from the WMAP data
- A Triple Main Sequence in the Globular Cluster NGC 2808
- The primordial abundance of 4He: a self-consistent empirical analysis of systematic effects in a large sample of low-metallicity HII regions
- The multiplicity of the subgiant branch of Omega Centauri: Evidence for prolonged star formation
- The origin of the double main sequence in Omega Centauri: Helium enrichment due to gas fueling from its ancient host galaxy ?
- The proper motion of the Arches cluster with Keck Laser-Guide Star Adaptive Optics
- Evaluation of Modern 3He(alpha,gamma)7Be Data
- On the Origin of the High Helium Sequence in Centauri
- Gemini Spectroscopic Survey of Young Star Clusters in Merging/Interacting Galaxies. I. NGC 3256 Tidal-Tail Clusters
- Inhomogeneous Big Bang Nucleosynthesis Revisited
- Reply to 'Comment on 'Heavy element production in inhomogeneous big bang nucleosynthesis''
- Highly He-Rich Matter Dredged Up by Extra Mixing through Stellar Encounters in Globular Clusters
- Surface pollution of main-sequence stars through encounters with AGB ejecta in omega Centauri
- Affleck Dine leptogenesis via multiple flat directions
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- Big-Bang nucleosynthyesis: constraints on nuclear reaction rates, neutrino degeneracy, inhomogeneous and Brans-Dicke models
- Does inhomogeneous big bang nucleosynthesis produce an inhomogeneous element distribution today?