Calculation of stellar electron-capture cross sections on nuclei based on microscopic Skyrme functionals
Abstract
A fully self-consistent microscopic framework for evaluation of nuclear weak-interaction rates at finite temperature is introduced, based on Skyrme functionals. The single-nucleon basis and the corresponding thermal occupation factors of the initial nuclear state are determined in the finite-temperature Skyrme Hartree-Fock model, and charge-exchange transitions to excited states are computed using the finite-temperature RPA. Effective interactions are implemented self-consistently: both the finite-temperature single-nucleon Hartree-Fock equations and the matrix equations of RPA are based on the same Skyrme energy density functional. Using a representative set of Skyrme functionals, the model is applied in the calculation of stellar electron-capture cross sections for selected nuclei in the iron mass group and for neutron-rich Ge isotopes.
Cite
@article{arxiv.0909.3070,
title = {Calculation of stellar electron-capture cross sections on nuclei based on microscopic Skyrme functionals},
author = {N. Paar and G. Colo and E. Khan and D. Vretenar},
journal= {arXiv preprint arXiv:0909.3070},
year = {2010}
}
Comments
31 pages, 13 figures, submitted to Physical Review C