Deep Mixing in Evolved Stars. II. Interpreting Li Abundances in RGB and AGB Stars
arXiv:1107.2844 · doi:10.1088/0004-637X/741/1/26
Abstract
We reanalyze the problem of Li abundances in red giants of nearly solar metallicity. After an outline of the problems affecting our knowledge of the Li content in low-mass stars (M<3Mo), we discuss deep-mixing models for the RGB stages suitable to account for the observed trends and for the correlated variations of the carbon isotope ratio; we find that Li destruction in these phases is limited to masses below about 2.3 Mo. Subsequently, we concentrate on the final stages of evolution for both O-rich and C-rich AGB stars. Here, the constraints on extra-mixing phenomena previously derived from heavier nuclei (from C to Al), coupled to recent updates in stellar structure models (including both the input physics and the set of reaction rates used), are suitable to account for the observations of Li abundances below A(Li)= log e(Li) = 1.5 (and sometimes more). Also their relations with other nucleosynthesis signatures of AGB phases (like the abundance of F, the C/O and 12C/13C ratios) can be explained. This requires generally moderate efficiencies (\dot M <= 0.3 - 0.5 x 10^-6 Mo/yr) for non-convective mass transport. At such rates, slow extra-mixing does not modify remarkably Li abundances in early-AGB phases; on the other hand, faster mixing encounters a physical limit in destroying Li, set by the mixing velocity. Beyond this limit, Li starts to be produced; therefore its destruction on the AGB is modest. Li is then significantly produced by the third dredge up. We also show that effective circulation episodes, while not destroying Li, would easily bring the 12C/13C ratios to equilibrium, contrary to the evidence in most AGB stars, and would burn F beyond the limits shown by C(N) giants. Hence, we do not confirm the common idea that efficient extra-mixing drastically reduces the Li content of C-stars with respect to K-M giants.
56 pages, 21 13 figures, ApJ submitted
References in corpus (18)
- Thermohaline mixing: A physical mechanism governing the photospheric composition of low-mass giants
- Deep Mixing of He-3: Reconciling Big Bang and Stellar Nucleosynthesis
- Rotational mixing in low-mass stars II. Self-consistent models of Pop II RGB stars
- Activation measurement of the 3He(alpha,gamma)7Be cross section at low energy
- Can Extra Mixing in RGB and AGB Stars Be Attributed to Magnetic Mechanisms?
- Microscopic calculation of the 3He(alpha,gamma)7Be and 3H(alpha,gamma)7Li capture cross sections using realistic interactions
- Lithium and zirconium abundances in massive Galactic O-rich AGB stars
- 3He(alpha,gamma)7Be cross section at low energies
- Magnetic Mixing in Red Giant and Asymptotic Giant Branch Stars
- The 3He(alpha,gamma)7Be S-factor at solar energies: the prompt gamma experiment at LUNA
- A Method to Derive the Absolute Composition of the Sun, the Solar System and the Stars
- Angular momentum transport by internal gravity waves III - Wave excitation by core convection and the Coriolis effect
- The evolutionary state of Miras with changing pulsation periods
- Mid Infrared Photometry of Mass-Losing AGB Stars
- The fluorine abundance in a Galactic Bulge AGB star measured from CRIRES spectra
- The effect of heavy element opacity on pre-main sequence Li depletion
- Fluorine Abundance Variations as a Signature of Enhanced Extra Mixing in Red Giants of the Globular Cluster M4
- Nuclear electron capture rate in stellar interiors and the case of 7Be
Cited by in corpus (32)
- On Lithium-Rich Red Giants. I. Engulfment of Sub-Stellar Companions
- News on the s process from young open clusters
- Lithium abundances in CEMP stars
- On the Numerical Treatment and Dependence of Thermohaline Mixing in Red Giants
- Old puzzle, new insights: a lithium rich giant quietly burning helium in its core
- MHD and deep mixing in evolved stars. 1. 2D and 3D analytical models for the AGB
- The Role of Thermohaline Mixing in Intermediate- and Low-Metallicity Globular Clusters
- The Gaia-ESO Survey: CNO abundances in the open clusters Trumpler 20, NGC 4815, and NGC 6705
- The Universal Initial Mass Function In The XUV Disk of M83
- Massive stars reveal variations of the stellar initial mass function in the Milky Way stellar clusters
- The Gaia-ESO Survey: the origin and evolution of s-process elements
- Carbon and oxygen isotopic ratios in Arcturus and Aldebaran: Constraining the parameters for non convective mixing on the RGB
- s-Processing in AGB Stars Revisited. III. Neutron captures from MHD mixing at different metallicities and observational constraints
- On how leakage can affect the Star Formation Rate estimation using Halpha luminosity
- Lithium abundances along the RGB: FLAMES-GIRAFFE spectra of a large sample of low-mass Bulge stars
- Discovery of Super-Li Rich Red Giants in Dwarf Spheroidal Galaxies
- The Gaia-ESO Survey: properties of newly discovered Li-rich giants
- On the Origin of the Early Solar System Radioactivities. Problems with the AGB and Massive Star Scenarios
- Theoretical Estimates of Stellar e-Captures. I. The half-life of 7Be in Evolved Stars
- WIYN Open Cluster Study, LXXVI. Li Evolution Among Stars of Low/Intermediate Mass: The Metal-Deficient Open Cluster, NGC 2506
- A Deep Mixing Solution to the Aluminum and Oxygen Isotope Puzzles in Presolar Grains
- High-resolution spectroscopic analysis of a large sample of Li-rich giants found by LAMOST
- The carbon star mystery: forty years later
- The chemical compositions and evolutionary status of red giants in the open cluster NGC 6940
- Lithium Evolution of Giant Stars Observed by LAMOST and Kepler
- Super lithium-rich K giant with low to ratio
- Weak G-band stars on the H-R Diagram: Clues to the origin of Li anomaly
- Evolutionary status of the active star PZ Mon
- Presolar grains
- The discovery of a Li-Na-rich giant star in Omega Centauri: formed from the pure ejecta of super-AGB stars?
- Galaxy Evolution in the Cluster Abell 85: New Insights from the Dwarf Population
- Production of n-rich nuclei in red giant stars