Non-LTE aluminium abundances in late-type stars
arXiv:1708.01949 · doi:10.1051/0004-6361/201730427
Abstract
Aluminium plays a key role in studies of the chemical enrichment of the Galaxy and of globular clusters. However, strong deviations from LTE (non-LTE) are known to significantly affect the inferred abundances in giant and metal-poor stars. We present NLTE modeling of aluminium using recent and accurate atomic data, in particular utilizing new transition rates for collisions with hydrogen atoms, without the need for any astrophysically calibrated parameters. For the first time, we perform 3D NLTE modeling of aluminium lines in the solar spectrum. We also compute and make available extensive grids of abundance corrections for lines in the optical and near-infrared using one-dimensional model atmospheres, and apply grids of precomputed departure coefficients to direct line synthesis for a set of benchmark stars with accurately known stellar parameters. Our 3D NLTE modeling of the solar spectrum reproduces observed center-to-limb variations in the solar spectrum of the 7835 Å line as well as the mid-infrared photospheric emission line at 12.33 micron. We infer a 3D NLTE solar photospheric abundance of A(Al) = 6.43+-0.03, in exact agreement with the meteoritic abundance. We find that abundance corrections vary rapidly with stellar parameters; for the 3961 Å resonance line, corrections are positive and may be as large as +1 dex, while corrections for subordinate lines generally have positive sign for warm stars but negative for cool stars. Our modeling reproduces the observed line profiles of benchmark K-giants, and we find abundance corrections as large as -0.3 dex for Arcturus. Our analyses of four metal-poor benchmark stars yield consistent abundances between the 3961 Å resonance line and lines in the UV, optical and near-infrared regions. Finally, we discuss implications for the galactic chemical evolution of aluminium.
20 pages, 15 figures. Accepted for publication in A&A
References in corpus (14)
- A grid of MARCS model atmospheres for late-type stars I. Methods and general properties
- Astrophysics Source Code Library
- Galactic chemical evolution: Carbon through Zinc
- Fast rotating massive stars and the origin of the abundance patterns in galactic globular clusters
- The elemental composition of the Sun I. The intermediate mass elements Na to Ca
- Non-LTE line formation of Fe in late-type stars - III. 3D non-LTE analysis of metal-poor stars
- Systematic non-LTE study of the [Fe/H] F and G dwarfs in the solar neighbourhood. II. Abundance patterns from Li to Eu
- NLTE determination of the aluminium abundance in a homogeneous sample of extremely metal-poor stars
- Mg line formation in late-type stellar atmospheres: I. The model atom
- The solar silicon abundance based on 3D non-LTE calculations
- 3D NLTE analysis of the most iron-deficient star, SMSS0313-6708
- Multiple stellar populations and their evolution in globular clusters: A nucleosynthesis perspective
- FTS atlas of the Sun's spectrally resolved center-to-limb variation
- Mg I emission lines at 12 and 18 micrometer in K giants
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