English

Low density Neutron Matter at Finite and Zero Temperatures

Nuclear Theory 2008-03-21 v1

Abstract

This report concerns the energy of neutron-matter for densities below 0.15fm30.15 fm^{-3} and temperatures at and below 10MeV10 MeV. Separable NN-interactions are obtained by inverse scattering from the experimental phase-shifts with specified momentum cut-offs Λ\Lambda. Results of Brueckner-Bloch-DeDomicis as well as finite temperature Green's function calculations show independence of cut-off for Λ3\Lambda \geq 3. Agreement with the low-density virial expansion is found. Results of Hartree-Fock as well as second order calculations show considerable Λ\Lambda-dependence and the agreement with the virial expansion is lost. The "best" first-order choice of Λ\Lambda is found to be 2.5fm1\sim 2.5 fm^{-1}, which agrees with VlowkV_{low k} studies. Reasonable agreement between the second order and the Brueckner results is also found for this value of Λ\Lambda except at low density. Only 2-body forces are used in this study.

Keywords

Cite

@article{arxiv.0803.3048,
  title  = {Low density Neutron Matter at Finite and Zero Temperatures},
  author = {H. S. Köhler},
  journal= {arXiv preprint arXiv:0803.3048},
  year   = {2008}
}

Comments

15 pages, 9 figures

R2 v1 2026-06-21T10:23:14.125Z