4.6 Article

New asymptotic giant branch models for a range of metallicities

Journal

ASTRONOMY & ASTROPHYSICS
Volume 508, Issue 3, Pages 1343-U313

Publisher

EDP SCIENCES S A
DOI: 10.1051/0004-6361/200912043

Keywords

stars: evolution; stars: AGB and post-AGB; stars: interiors

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We present a new grid of stellar model calculations for stars on the Asymptotic Giant Branch between 1.0 and 6.0 M-circle dot. Our grid consists of 10 chemical mixtures with 5 metallicities between Z = 0.0005 and Z = 0.04, and with both solar-like and alpha-element enhanced metal ratios for each metallicity. We treat consistently the carbon-enhancement of the stellar envelopes by using opacity tables with varying C/O-ratio and by employing theoretical mass loss rates for carbon stars. The low temperature opacities have been calculated specifically for this project. For oxygen stars we use an empirical mass loss formalism. The third dredge-up is naturally obtained by including convective overshooting. Our models reach effective temperatures in agreement with earlier synthetic models, which included approximative carbon-enriched molecular opacities and show good agreement with empirically determined carbon-star lifetimes. A fraction of the models could be followed into the post-AGB phase, for which we provide models in a mass range supplementing previous post-AGB calculations. Our grid constitutes the most extensive set of AGB-models, calculated with the latest physical input data and treating carbon-enhancement due to the third dredge-up most consistently.

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