arXiv:1609.02341·v1·Nuclear Theory
Quasi-particle random phase approximation with quasi-particle-vibration coupling: application to the Gamow-Teller response of the superfluid nucleus Sn
Y. F. Niu · G. Colo · E. Vigezzi · C. L. Bai · H. Sagawa
Abstract
We propose a self-consistent quasi-particle random phase approximation (QRPA) plus quasi-particle-vibration coupling (QPVC) model with Skyrme interactions to describe the width and the line shape of giant resonances in open-shell nuclei, in which the effect of superfluidity should be taken into account in both the ground state and the excited states. We apply the new model to the Gamow-Teller resonance in the superfluid nucleus Sn, including both the isoscalar spin-triplet and the isovector spin-singlet pairing interactions. The strength distribution in Sn is well reproduced and the underlying microscopic mechanisms, related to QPVC and also to isoscalar pairing, are analyzed in detail.
Comments: 32 pages, 11 figures, 4 tables