arXiv:nucl-th/0609074·v1·Nuclear Theory
Shell model method for Gamow-Teller Transitions in heavy, deformed nuclei
Zao-Chun Gao (CIAE)🇺🇸 · Yang Sun (Notre Dame)🇺🇸 · Y.-S. Chen (CIAE)🇨🇳
Abstract
A method for calculation of Gamow-Teller transition rates is developed by using the concept of the Projected Shell Model (PSM). The shell model basis is constructed by superimposing angular-momentum-projected multi-quasiparticle configurations, and nuclear wave functions are obtained by digonalizing the two-body interactions in these projected states. Calculation of transition matrix elements in the PSM framework is discussed in detail, and the effects caused by the Gamow-Teller residual forces and by configuration-mixing are studied. With this method, it may become possible to perform a state-by-state calculation for beta-decay and electron-capture rates in heavy, deformed nuclei at finite temperatures. Our first example indicates that, while experimentally known Gamow-Teller transition rates from the ground state of the parent nucleus are reproduced, stronger transitions from some low-lying excited states are predicted to occur, which may considerably enhance the total decay rates once these nuclei are exposed to hot stellar environments.
Comments: 11 pages, 8 figures