English

Critical densities for the Skyrme type effective interactions

Nuclear Theory 2009-11-10 v1

Abstract

We use the stability conditions of the Landau parameters for the symmetric nuclear matter and pure neutron matter to calculate the critical densities for the Skyrme type effective nucleon-nucleon interactions. We find that the critical density can be maximized by adjusting appropriately the values of the enhancement factor κ\kappa associated with isovector giant dipole resonance, the quantity LL which is directly related to the slope of the symmetry energy and the Landau parameter G0G_0^\prime. However, restricting κ\kappa, LL and G0G_0^\prime to vary within acceptable limits reduces the maximum value for the critical density ρ~cr\tilde\rho_{cr} by 25\sim 25%. We also show that among the various quantities characterizing the symmetric nuclear matter, ρ~cr\tilde\rho_{cr} depends strongly on the isoscalar effective mass m/mm^*/m and surface energy coefficient EsE_s. For realistic values of m/mm^*/m and EsE_s we get ρ~cr=2ρ0\tilde\rho_{cr} = 2\rho_0 to 3ρ0 3\rho_0 (ρ0=0.16\rho_0 = 0.16fm3^{-3}).

Keywords

Cite

@article{arxiv.nucl-th/0409053,
  title  = {Critical densities for the Skyrme type effective interactions},
  author = {B. K. Agrawal and S. Shlomo and V. Kim Au},
  journal= {arXiv preprint arXiv:nucl-th/0409053},
  year   = {2009}
}

Comments

10 pages, 3 figures. Physicsl Review C (in press)

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