Stellar electron-capture rates calculated with the finite-temperature relativistic random-phase approximation
Nuclear Theory
2011-05-13 v2
Abstract
We introduce a self-consistent microscopic theoretical framework for modelling the process of electron capture on nuclei in stellar environment, based on relativistic energy density functionals. The finite-temperature relativistic mean-field model is used to calculate the single-nucleon basis and the occupation factors in a target nucleus, and , , charge-exchange transitions are described by the self-consistent finite-temperature relativistic random-phase approximation. Cross sections and rates are calculated for electron capture on 54,56Fe and 76,78Ge in stellar environment, and results compared with predictions of similar and complementary model calculations.
Cite
@article{arxiv.1104.1683,
title = {Stellar electron-capture rates calculated with the finite-temperature relativistic random-phase approximation},
author = {YiFei Niu and Nils Paar and Dario Vretenar and Jie Meng},
journal= {arXiv preprint arXiv:1104.1683},
year = {2011}
}
Comments
Physical Review C, accepted