English

Fermi liquid, clustering, and structure factor in dilute warm nuclear matter

Nuclear Theory 2017-12-07 v1

Abstract

Properties of nuclear systems at subsaturation densities can be obtained from different approaches. We demonstrate the use of the density autocorrelation function which is related to the isothermal compressibility and, after integration, to the equation of state. This way we connect the Landau Fermi liquid theory well elaborated in nuclear physics with the approaches to dilute nuclear matter describing cluster formation. A quantum statistical approach is presented, based on the cluster decomposition of the polarization function. The fundamental quantity to be calculated is the dynamic structure factor. Comparing with the Landau Fermi liquid theory which is reproduced in lowest approximation, the account of bound state formation and continuum correlations gives the correct low-density result as described by the second virial coefficient and by the mass action law (nuclear statistical equilibrium). Going to higher densities, the inclusion of medium effects is more involved compared with other quantum statistical approaches, but the relation to the Landau Fermi liquid theory gives a promising approach to describe not only thermodynamic but also collective excitations and non-equilibrium properties of nuclear systems in a wide region of the phase diagram.

Keywords

Cite

@article{arxiv.1710.08251,
  title  = {Fermi liquid, clustering, and structure factor in dilute warm nuclear matter},
  author = {Gerd Roepke and Dmitri Voskresensky and Ivan Kryukov and David Blaschke},
  journal= {arXiv preprint arXiv:1710.08251},
  year   = {2017}
}

Comments

26 pages, 9 figures, 3 tables

R2 v1 2026-06-22T22:22:39.144Z