The temporal evolution of neutron-capture elements in the Galactic discs
Abstract
Important insights into the formation and evolution of the Galactic disc(s) are contained in the chemical compositions of stars. We analysed high-resolution and high signal to noise HARPS spectra of 79 solar twin stars in order to obtain precise determinations of their atmospheric parameters, ages (0.4 Gyr) and chemical abundances (0.01~dex) of 12 neutron-capture elements (Sr, Y, Zr, Ba, La, Ce, Pr, Nd, Sm, Eu, Gd, and Dy). This valuable dataset allows us to study the [X/Fe]-age relations over a time interval of 10 Gyr and among stars belonging to the thin and thick discs. These relations show that i) the -process has been the main channel of nucleosynthesis of -capture elements during the evolution of the thin disc; ii) the thick disc is rich in -process elements which suggests that its formation has been rapid and intensive. %; iii) a chemical continuity between the thin and thick discs is evident in the abundances of Ba. In addition, the heavy (Ba, La, Ce) and light (Sr, Y, Zr) -process elements revealed details on the dependence between the yields of AGB stars and the stellar mass or metallicity. Finally, we confirmed that both [Y/Mg] and [Y/Al] ratios can be employed as stellar clocks, allowing ages of solar twin stars to be estimated with an average precision of 0.5~Gyr.
Cite
@article{arxiv.1711.03643,
title = {The temporal evolution of neutron-capture elements in the Galactic discs},
author = {Lorenzo Spina and Jorge Meléndez and Amanda I. Karakas and Leonardo dos Santos and Megan Bedell and Martin Asplund and Ivan Ramírez and David Yong and Alan Alves-Brito and Jacob L. Bean and Stefan Dreizler},
journal= {arXiv preprint arXiv:1711.03643},
year = {2017}
}