Surface Incompressibility from Semiclassical Relativistic Mean Field Calculations
Nuclear Theory
2010-12-23 v2
Abstract
By using the scaling method and the Thomas-Fermi and Extended Thomas-Fermi approaches to Relativistic Mean Field Theory the surface contribution to the leptodermous expansion of the finite nuclei incompressibility has been self-consistently computed. The validity of the simplest expansion, which contains volume, volume-symmetry, surface and Coulomb terms, is examined by comparing it with self-consistent results of the finite nuclei incompressibility for some currently used non-linear sigma-omega parameter sets. A numerical estimate of higher-order contributions to the leptodermous expansion, namely the curvature and surface-symmetry terms, is made.
Cite
@article{arxiv.nucl-th/0111007,
title = {Surface Incompressibility from Semiclassical Relativistic Mean Field Calculations},
author = {S. K. Patra and M. Centelles and X. Vinas and M. Del Estal},
journal= {arXiv preprint arXiv:nucl-th/0111007},
year = {2010}
}
Comments
18 pages, REVTeX, 3 eps figures, changed content