English

Astrophysical weak-interaction rates for selected $A=20$ and $A=24$ nuclei

High Energy Astrophysical Phenomena 2015-06-18 v1 Nuclear Experiment Nuclear Theory

Abstract

We have evaluated the electron capture rates on 20^{20}Ne, 20^{20}F, 24^{24}Mg, 24^{24}Na and the β\beta decay rates for 20^{20}F and 24^{24}Na at temperature and density conditions relevant for the late-evolution stages of stars with M=8M=8-12 M_\odot. The rates are based on recent experimental data and large-scale shell model calculations. We show that the electron capture rates on 20^{20}Ne, 24^{24}Mg and the 20^{20}F, 24^{24}Na β\beta-decay rates are based on data in this astrophysical range, except for the capture rate on 20^{20}Ne, which we predict to have a dominating contribution from the second-forbidden transition between the 20^{20}Ne and 20^{20}F ground states in the density range logρYe(g cm3)=9.3\log \rho Y_e (\mathrm{g~cm}^{-3}) = 9.3-9.6. The dominance of a few individual transitions allows us to present the various rates by analytical expressions at the relevant astrophysical conditions. We also derive the screening corrections to the rates.

Keywords

Cite

@article{arxiv.1402.0793,
  title  = {Astrophysical weak-interaction rates for selected $A=20$ and $A=24$ nuclei},
  author = {G. Martínez-Pinedo and Y. H. Lam and K. Langanke and R. G. T. Zegers and C. Sullivan},
  journal= {arXiv preprint arXiv:1402.0793},
  year   = {2015}
}

Comments

21 pages, 12 figures