Nucleosynthesis of light element isotopes in evolved stars experiencing extended mixing
arXiv:0905.4365 · doi:10.1071/AS08040
Abstract
We present computations of nucleosynthesis in red giants and asymptotic giant branch stars of Population I experiencing extended mixing. The assumed physical cause for mass transport is the buoyancy of magnetized structures, according to recent suggestions. The peculiar property of such a mechanism is to allow for both fast and slow mixing phenomena, as required for reproducing the spread in Li abundances displayed by red giants and as discussed in an accompanying paper. We explore here the effects of this kind of mass transport on CNO and intermediatemass nuclei and compare the results with the available evidence from evolved red giants and from the isotopic composition of presolar grains of AGB origin. It is found that a good general accord exists between predictions and measurements; in this framework we also show which type of observational data best constrains the various parameters. We conclude that magnetic buoyancy, allowing for mixing at rather different speeds, can be an interesting scenario to explore for explaining together the abundances of CNO nuclei and of Li.
8 pages, 7 figures, proceeding of 'The Origin of the Elements Heavier than Fe' September 24-28, 2008, Torino, Italy. PASA (accepted for publication)
References in corpus (5)
- Deep Mixing of He-3: Reconciling Big Bang and Stellar Nucleosynthesis
- Can Extra Mixing in RGB and AGB Stars Be Attributed to Magnetic Mechanisms?
- Magnetic Mixing in Red Giant and Asymptotic Giant Branch Stars
- HIP 56948: A Solar Twin With a Low Lithium Abundance
- Frequent Occurrence of High-speed Local Mass Downflows on the Solar Surface
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