First stars VII. Lithium in extremely metal poor dwarfs
arXiv:astro-ph/0610245 · doi:10.1051/0004-6361:20064834
Abstract
Aims. This study aims to determine the level and constancy of the Spite plateau as definitively as possible from homogeneous high-quality VLT-UVES spectra of 19 of the most metal-poor dwarf stars known. Methods. Our high-resolution (R ~ 43000), high S/N spectra are analysed with OSMARCS 1D LTE model atmospheres and turbospectrum synthetic spectra to determine effective temperatures, surface gravities, and metallicities, as well as Li abundances for our stars. Results. Eliminating a cool subgiant and a spectroscopic binary, we find 8 stars to have -3.5 < [Fe/H] < -3.0 and 9 stars with -3.0 < [Fe/H] < -2.5. Our best value for the mean level of the plateau is A(Li) =2.10 +- 0.09. The scatter around the mean is entirely explained by our estimate of the observational error and does not allow for any intrinsic scatter in the Li abundances. In addition, we conclude that a systematic error of the order of 200 K in any of the current temperature scales remains possible. The iron excitation equilibria in our stars support our adopted temperature scale, which is based on a fit to wings of the Halpha line, and disfavour hotter scales, which would lead to a higher Li abundance, but fail to achieve excitation equilibrium for iron. Conclusions. We confirm the previously noted discrepancy between the Li abundance measured in extremely metal-poor turnoff stars and the primordial Li abundance predicted by standard Big-Bang nucleosynthesis models adopting the baryonic density inferred from WMAP. We discuss recent work explaining the discrepancy in terms of diffusion and find that uncertain temperature scales remain a major question. (abridged)
Figure 3 replaced, it was wrong in version 1. Minor corrections to the text following indications of A&A Language Editor
References in corpus (1)
Cited by in corpus (26)
- Two Stellar Components in the Halo of the Milky Way
- Big-Bang Nucleosynthesis and Gravitino
- A new implementation of the infrared flux method using the 2MASS catalogue
- A Bitter Pill: The Primordial Lithium Problem Worsens
- Atomic Diffusion and Mixing in Old Stars I. VLT/FLAMES-UVES Observations of Stars in NGC 6397
- The primordial abundance of 4He: a self-consistent empirical analysis of systematic effects in a large sample of low-metallicity HII regions
- NLTE determination of the aluminium abundance in a homogeneous sample of extremely metal-poor stars
- The Helium abundance and Delta Y / Delta Z in Lower Main Sequence stars
- Evolution of the Barium abundance in the early Galaxy from a NLTE analysis of the Ba lines in a homogeneous sample of EMP stars
- Solar twins in M67
- CS22964-161: A Double-Lined Carbon- and s-Process-Enhanced Metal-Poor Binary Star
- Lithium abundances of halo dwarfs based on excitation temperature. I. LTE
- The Hobby-Eberly Telescope "Chemical Abundances of Stars in the Halo" (CASH) Project. I. The Lithium-, s-, and r-Enhanced Metal-Poor Giant HKII 17435-00532
- First Stars XI. Chemical composition of the extremely metal-poor dwarfs in the binary CS 22876--032
- Variations in the lithium abundances of turn off stars in the globular cluster 47 Tuc
- Sulphur abundances from the SI near-infrared triplet at 1045 nm
- 6Li/7Li estimates for metal-poor stars
- Early Universe Constraints on Time Variation of Fundamental Constants
- Cosmic Ray production of Beryllium and Boron at high redshift
- Beryllium in Ultra-Lithium-Deficient Halo Stars - The Blue Straggler Connection
- Time variation of the fine structure constant in the early universe and the Bekenstein model
- Time variation of the electron mass in the early universe and the Barrow-Magueijo model
- Membership and lithium in the old, metal-poor open cluster Berkeley 32
- The long-lived stau as a thermal relic
- Overview of the lithium problem in metal-poor stars and new results on 6Li
- The ESO Large Programme First Stars