Lithium-7 surface abundance in pre-MS stars. Testing theory against clusters and binary systems
arXiv:1210.4134 · doi:10.1051/0004-6361/201219111
Abstract
The disagreement between theoretical predictions and observations for surface lithium abundance in stars is a long-standing problem, which indicates that the adopted physical treatment is still lacking in some points. However, thanks to the recent improvements in both models and observations, it is interesting to analyse the situation to evaluate present uncertainties. We present a consistent and quantitative analysis of the theoretical uncertainties affecting surface lithium abundance in the current generation of models. By means of an up-to-date and well tested evolutionary code, FRANEC, theoretical errors on surface 7Li abundance predictions, during the pre-main sequence (pre-MS) and main sequence (MS) phases, are discussed in detail. Then, the predicted surface 7Li abundance was tested against observational data for five open clusters, namely Ic 2602, αPer, Blanco1, Pleiades, and Ngc 2516, and for four detached double-lined eclipsing binary systems. Stellar models for the aforementioned clusters were computed by adopting suitable chemical composition, age, and mixing length parameter for MS stars determined from the analysis of the colour-magnitude diagram of each cluster. We restricted our analysis to young clusters, to avoid additional uncertainty sources such as diffusion and/or radiative levitation efficiency. We confirm the disagreement, within present uncertainties, between theoretical predictions and 7Li observations for standard models. However, we notice that a satisfactory agreement with observations for 7Li abundance in both young open clusters and binary systems can be achieved if a lower convection efficiency is adopted during the pre-MS phase with respect to the MS one.
10 pages, 5 figures. Accepted for publication in A&A
References in corpus (10)
- The Helium abundance and Delta Y / Delta Z in Lower Main Sequence stars
- Calibrating Convective properties of Solar-like Stars in the Kepler Field of View
- Models of alpha Centauri A and B with and without seismic constraints: time dependence of the mixing-length parameter
- A synoptic comparison of the MHD and the OPAL equations of state
- Connecting the primordial and Galactic deuterium abundances
- Transport processes in stars: diffusion, rotation, magnetic fields and internal waves
- The Pre-Main-Sequence Eclipsing Binary ASAS J052821+0338.5
- Non-gray rotating stellar models and the evolutionary history of the Orion Nebular Cluster
- New light on the old problem of lithium pre--MS depletion: models with 2D RHD convection
- The effect of heavy element opacity on pre-main sequence Li depletion
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- IN-SYNC IV - The Young Stellar Population in the Orion A Molecular Cloud
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- A Tale of Two Anomalies: Depletion, Dispersion, and the Connection Between the Stellar Lithium Spread and Inflated Radii on the Pre-Main Sequence
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- Dynamical Masses and Stellar Evolutionary Model Predictions of M-Stars
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