Tungsten in barium stars
Abstract
Classical barium stars are red giants that received from their evolved binary companions material exposed to the \textit{slow} neutron-capture nucleosynthesis, i.e., the -process. Such a mechanism is expected to have taken place in the interiors of Thermally-Pulsing Asymptotic Giant Branch (TP-AGB) stars. As post-interacting binaries, barium stars figure as powerful tracers of the -process nucleosynthesis, evolution of binary systems, and mechanisms of mass transfer. The present study is the fourth in a series of high-resolution spectroscopic analyses on a sample of 180 barium stars, for which we report tungsten (W, ) abundances. The abundances were derived from synthetic spectrum computations of the W\,{\sc i} absorption features at 4\,843.8~\AA\ and 5\,224.7~\AA. We were able to extract abundances for 94 stars; the measured [W/Fe] ratios range from to dex, increasing with decreasing of metallicity. We noticed that in the plane [W/Fe] versus [/Fe] barium stars follow the same trend observed in post-AGB stars. The observational data were also compared with predictions of the {\sc fruity} and Monash AGB nucleosynthesis models. These expect values between and dex for the [W/hs] ratios, whereas a larger spread is observed in the program stars, with [W/hs] ranging from to dex. The stars with high [W/hs] ratios may represent evidence for the operation of the intermediate neuron-capture process at metallicities close to solar.
Cite
@article{arxiv.2401.09206,
title = {Tungsten in barium stars},
author = {M. P. Roriz and M. Lugaro and S. Junqueira and C. Sneden and N. Drake and C. B. Pereira},
journal= {arXiv preprint arXiv:2401.09206},
year = {2024}
}
Comments
11 pages, 4 figures, accepted for publication in MNRAS