paper

Neutron-capture elements in dwarf galaxies II: Challenges for the s- and i-processes at low metallicity

arXiv:1912.06671 · doi:10.1051/0004-6361/201937075

Abstract

The slow () and intermediate () neutron () capture processes occur both in asymptotic giant branch (AGB) stars, and in massive stars. To study the build-up of the - and -products at low metallicity, we investigate the abundances of Y, Ba, La, Nd, and Eu in 98 stars, at , in the Sculptor dwarf spheroidal galaxy. The chemical enrichment from AGB stars becomes apparent at in Sculptor, and causes [Y/Ba], [La/Ba], [Nd/Ba] and [Eu/Ba] to decrease with metallicity, reaching subsolar values at the highest . To investigate individual nucleosynthetic sites, we compared three -rich Sculptor stars with theoretical yields. One carbon-enhanced metal-poor (CEMP-no) star with high is best fit with a model of a rapidly-rotating massive star, the second (likely CH star) with the -process, while the third has no satisfactory fit. For a more general understanding of the build-up of the heavy elements, we calculate for the first time the cumulative contribution of the - and -processes to the chemical enrichment in Sculptor, and compare with theoretical predictions. By correcting for the -process, we derive , , and , in the overall - and/or -process in Sculptor. These abundance ratios are within the range of those of CEMP stars in the Milky Way, which have either - or -process signatures. The low and that we measure in Sculptor are inconsistent with them arising from the -process only, but are more compatible with models of the -process. Thus we conclude that both the - and -processes were important for the build-up of -capture elements in the Sculptor dwarf spheroidal galaxy.

Accepted in A&A, 16 pages, 10 figures, Paper II in series

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