arXiv:1304.5858·v1·Nuclear Theory
A Time Dependent Local Isospin Density Approximation Study of Asymmetric Nuclear Matter
Enrico Lipparini · Francesco Pederiva
Abstract
The dynamic response of asymmetric nuclear matter is studied by using a Time-Dependent Local Isospin Density (TDLIDA) approximation approach. Calculations are based on a local density energy functional derived by an Auxiliary Field Diffusion Monte Carlo (AFDMC) calculation of bulk nuclear matter. Three types of excited states emerge: collective states, a continuum of quasi-particle-quasi-hole excitations and unstable solutions. These states are analyzed and discussed for different values of the nuclear density and isospin asymmetry . An analytical expression of the compressibility as a function of and is derived which show explicitly an instability of the neutron matter around when a small fraction of protons is added to the system.
Comments: 10 pages, 10 figures