Octupole response and stability of spherical shape in heavy nuclei
Abstract
The isoscalar octupole response of a heavy spherical nucleus is analyzed in a semiclassical model based on the linearized Vlasov equation. The octupole strength function is evaluated with different degrees of approximation. The zero-order fixed-surface response displays a remarkable concentration of strength in the and regions, in excellent agreement with the quantum single-particle response. The collective fixed-surface response reproduces both the high- and low-energy octupole rsonances, but not the low-lying collective states, while the moving-surface response function gives a good qualitative description of all the main features of the octupole response in heavy nuclei. The role of triangular nucleon orbits, that have been related to a possible instability of the spherical shape with respect to octupole-type deformations, is discussed within this model. It is found that, rather than creating instability, the triangular trajectories are the only classical orbits contributing to the damping of low-energy octupole excitations.
Keywords
Cite
@article{arxiv.nucl-th/0307040,
title = {Octupole response and stability of spherical shape in heavy nuclei},
author = {V. I. Abrosimov and O. I. Davidovskaya and A. Dellafiore and F. Matera},
journal= {arXiv preprint arXiv:nucl-th/0307040},
year = {2009}
}
Comments
10 pages, Latex file, 7 ps figures