Thermodynamics of $n$-$p$ condensate in asymmetric nuclear matter
Nuclear Theory
2009-11-06 v1 Astrophysics
Abstract
We study the neutron-proton pairing in nuclear matter as a function of isospin asymmetry at finite temperatures and the saturation density using realistic nuclear forces and Brueckner-renormalized single particle spectra. Our computation of the thermodynamic quantities shows that while the difference of the entropies of the superconducting and normal phases anomalously changes its sign as a function of temperature for arbitrary asymmetry, the grand canonical potential does not; the superconducting state is found to be stable in the whole temperature-asymmetry plane. The pairing gap completely disappears for density-asymmetries exceeding .
Keywords
Cite
@article{arxiv.nucl-th/9907076,
title = {Thermodynamics of $n$-$p$ condensate in asymmetric nuclear matter},
author = {Armen Sedrakian and Umberto Lombardo},
journal= {arXiv preprint arXiv:nucl-th/9907076},
year = {2009}
}
Comments
7 pages, including 3 figures, uses revtex