Chemical Evolution of R-process Elements in Stars (CERES). III. Chemical abundances of neutron capture elements from Ba to Eu
L. Lombardo, C.J. Hansen, F. Rizzuti (OAT), G. Cescutti, L.I., Mashonkina (INASAN), P. Fran\c{c}ois (GEPI), P. Bonifacio (GEPI), E. Caffau, (GEPI), A Alencastro Puls, R. Fernandes de Melo, A.J. Gallagher (AIP), \'A., Sk\'ulad\'ottir (UniFI), A.J. Koch-Hansen (ZAH)

TL;DR
This study analyzes the chemical abundances of neutron capture elements in metal-poor stars to understand the nucleosynthesis processes, especially the r-process, in the early Galaxy using high-resolution spectra.
Contribution
It provides a homogeneous analysis of heavy neutron capture elements in 52 metal-poor stars, clarifying the transition from r-process to s-process dominance at low metallicities.
Findings
Ba nucleosynthesis is r-process dominated for Ba/H < -2.4
Stars with pure r-process signatures show similar environments to others
Homogeneous high-quality spectra are essential for nucleosynthesis testing
Abstract
The chemical abundances of elements such as barium and the lanthanides are essential to understand the nucleosynthesis of heavy elements in the early Universe as well as the contribution of different neutron capture processes (for example slow versus rapid) at different epochs. The Chemical Evolution of R-process Elements in Stars (CERES) project aims to provide a homogeneous analysis of a sample of metal-poor stars ( [Fe/H]\<-1.5) to improve our understanding of the nucleosynthesis of neutron capture elements, in particular the r-process elements, in the early Galaxy. Our data consist of a sample of high resolution and high signal-to-noise ratio UVES spectra. The chemical abundances were derived through spectrum synthesis, using the same model atmospheres and stellar parameters as derived in the first paper of the CERES series. We measured chemical abundances or upper limits of seven…
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