Context. Barium (Ba) stars are dwarf and giant stars enriched in elements heavier than iron produced by the slow neutron-capture process (s process). These stars belong to binary systems in which the primary star evolved through the asymptotic giant branch (AGB) phase. During this phase the primary star produced s-process elements and transferred them onto the secondary, which is now observed as a Ba star. Aims: We compare the largest homogeneous set of Ba giant star observations of the s-process elements Y, Zr, La, Ce, and Nd with AGB nucleosynthesis models to reach a better understanding of the s process in AGB stars. Methods: By considering the light-s (ls: Y and Zr) heavy-s (hs: La, Ce, and Nd) and elements individually, we computed for...
Context.Barium stars show enhanced abundances for the slow neutron capture (s-process) heavy elemen...
The version of record, M. Lugaro et al., 2016, 'Current Hot Questions on the s process in AGB stars'...
Context. Barium stars are s-process enriched giants. They owe their chemical peculiarities to a past...
© ESO 2018. Context. Barium (Ba) stars are dwarf and giant stars enriched in elements heavier than i...
© ESO 2018. Context. Barium (Ba) stars are dwarf and giant stars enriched in elements heavier than i...
Context. Barium (Ba) stars are dwarf and giant stars enriched in elements heavier than iron produce...
Context. Barium (Ba) stars are dwarf and giant stars enriched in elements heavier than iron produced...
Context. Barium (Ba) stars are dwarf and giant stars enriched in elements heavier than iron produced...
Context. Barium (Ba) stars are dwarf and giant stars enriched in elements heavier than iron produced...
Context. Barium (Ba) stars are polluted by material enriched in the slow neutron capture (s-process)...
The Barium (Ba) star phenomenon is unmissable from the study and understanding of nucleosynthetic pr...
Asymptotic giant branch (AGB) stars are a main site of production of nuclei heavier than iron via th...
Asymptotic giant branch (AGB) stars are a main site of production of nuclei heavier than iron via th...
Asymptotic giant branch (AGB) stars are a main site of production of nuclei heavier than iron via th...
Asymptotic giant branch (AGB) stars are a main site of production of nuclei heavier than iron via th...
Context.Barium stars show enhanced abundances for the slow neutron capture (s-process) heavy elemen...
The version of record, M. Lugaro et al., 2016, 'Current Hot Questions on the s process in AGB stars'...
Context. Barium stars are s-process enriched giants. They owe their chemical peculiarities to a past...
© ESO 2018. Context. Barium (Ba) stars are dwarf and giant stars enriched in elements heavier than i...
© ESO 2018. Context. Barium (Ba) stars are dwarf and giant stars enriched in elements heavier than i...
Context. Barium (Ba) stars are dwarf and giant stars enriched in elements heavier than iron produce...
Context. Barium (Ba) stars are dwarf and giant stars enriched in elements heavier than iron produced...
Context. Barium (Ba) stars are dwarf and giant stars enriched in elements heavier than iron produced...
Context. Barium (Ba) stars are dwarf and giant stars enriched in elements heavier than iron produced...
Context. Barium (Ba) stars are polluted by material enriched in the slow neutron capture (s-process)...
The Barium (Ba) star phenomenon is unmissable from the study and understanding of nucleosynthetic pr...
Asymptotic giant branch (AGB) stars are a main site of production of nuclei heavier than iron via th...
Asymptotic giant branch (AGB) stars are a main site of production of nuclei heavier than iron via th...
Asymptotic giant branch (AGB) stars are a main site of production of nuclei heavier than iron via th...
Asymptotic giant branch (AGB) stars are a main site of production of nuclei heavier than iron via th...
Context.Barium stars show enhanced abundances for the slow neutron capture (s-process) heavy elemen...
The version of record, M. Lugaro et al., 2016, 'Current Hot Questions on the s process in AGB stars'...
Context. Barium stars are s-process enriched giants. They owe their chemical peculiarities to a past...