arXiv:nucl-th/9910074·v1·Nuclear Theory
Chiral quark-soliton model in the Wigner-Seitz approximation
P. Amore (College of William and Mary, Williamsburg, VA)🇺🇸 · A. De Pace (Istituto Nazionale di Fisica Nucleare, Torino, Italy)🇮🇹
Abstract
In this paper we study the modification of the properties of the nucleon in the nucleus within the quark-soliton model. This is a covariant, dynamical model, which provides a non-linear representation of the spontaneously broken SU(2)_L X SU(2)_R symmetry of QCD. The effects of the nuclear medium are accounted for by using the Wigner-Seitz approximation and therefore reducing the complex many-body problem to a simpler single-particle problem. We find a minimum in the binding energy at finite density, a change in the isoscalar nucleon radius and a reduction of the in-medium pion decay constant. The latter is consistent with a partial restoration of chiral symmetry at finite density, which is predicted by other models.
Comments: 30 pages, 13 figures; uses REVTeX and epsfig