Estimating R-Process Yields from Abundances of the Metal-Poor Stars
arXiv:1407.4878 · doi:10.1086/677201
Abstract
The chemical abundances of metal-poor stars provide important clues to explore stellar formation history and set significant constraints on models of the r-process. In this work, we find that the abundance patterns of the light and iron group elements of the main r-process stars are very close to those of the weak r-process stars. Based on a detailed abundance comparison, we find that the weak r-process occurs in supernovae with a progenitor mass range of . Using the SN yields given by Heger & Woosley and the abundances of the weak r-process stars, the weak r-process yields are derived. The SNe with a progenitor mass range of are the main sites of the weak r-process and their contributions are larger than 80%. Using the abundance ratios of the weak r-process and the main r-process in the solar system, the average yields of the main r-process are estimated. The observed correlations of the [neutron-capture/Eu] versus [Eu/Fe] can be explained by mixing of the two r-process abundances in various fractions.
The article has been published by PASP, 2014, 126, 544
References in corpus (7)
- The r-process of stellar nucleosynthesis: Astrophysics and nuclear physics achievements and mysteries
- First Stars VIII -- Enrichment of the neutron-capture elements in the early Galaxy
- Near-UV Observations of HD221170: New Insights into the Nature of r-Process-Rich Stars
- Neutron-capture elements in the very metal-poor star HD122563
- Nucleosynthesis in the Early Galaxy
- Neutron-capture elements in the very metal-poor star HD88609: another st ar with excesses of light neutron-capture elements
- An inhomogeneous model for the Galactic halo: a possible explanation for the spread observed in s- and r-process elements