Shell-model study of Si: coexistence of oblate, prolate and superdeformed shapes
arXiv:2404.14506 · doi:10.1103/PhysRevC.110.054326
Abstract
We study the shape coexistence in the nucleus Si with the nuclear shell model using numerical diagonalizations complemented with variational calculations based on the projected generator-coordinate method. The theoretical electric quadrupole moments and transitions as well as the collective wavefunctions indicate that the standard USDB interaction in the shell describes well the ground-state oblate rotational band, but misses the experimental prolate band. Guided by the quasi-SU(3) model, we show that the prolate band can be reproduced in the shell by reducing the energy of the orbital. Alternatively, in the extended configuration space a modification of the SDPF-NR interaction that accommodates cross-shell excitations also reproduces the oblate and prolate bands. Finally, we address the possibility of superdeformation in Si within the space. Our results indicate that superdeformed structures appear at about -~MeV.
15 pages, 11 figures. Improved version following the reviewer's comments