English

Incompressibility of neutron-rich matter

Nuclear Theory 2009-05-13 v2 Nuclear Experiment

Abstract

The saturation properties of neutron-rich matter are investigated in a relativistic mean-field formalism using two accurately calibrated models: NL3 and FSUGold. The saturation properties - density, binding energy per nucleon, and incompressibility coefficient - are calculated as a function of the neutron-proton asymmetry alpha=(N-Z)/A to all orders in alpha. Good agreement (at the 10% level or better) is found between these numerical calculations and analytic expansions that are given in terms of a handful of bulk parameters determined at saturation density. Using insights developed from the analytic approach and a general expression for the incompressibility coefficient of infinite neutron-rich matter, i.e., K0(alpha)=K0+Ktau*alpha^{2}+..., we construct a Hybrid model with values for K0 and Ktau as suggested by recent experimental findings. Whereas the Hybrid model provides a better description of the measured distribution of isoscalar monopole strength in the Sn-isotopes relative to both NL3 and FSUGold, it significantly underestimates the distribution of strength in 208Pb. Thus, we conclude that the incompressibility coefficient of neutron-rich matter remains an important open problem.

Keywords

Cite

@article{arxiv.0812.4499,
  title  = {Incompressibility of neutron-rich matter},
  author = {J. Piekarewicz and M. Centelles},
  journal= {arXiv preprint arXiv:0812.4499},
  year   = {2009}
}

Comments

23 pages, 9 figures, and 4 tables (to appear in PRC)

R2 v1 2026-06-21T11:55:31.531Z