English

Phase diagram of alpha matter with Skyrme-like scalar interaction

Nuclear Theory 2021-02-10 v3 High Energy Physics - Phenomenology

Abstract

The equation of state and phase diagram of strongly interacting matter composed of α\alpha particles are studied in the mean-field approximation. The particle interactions are included via a Skyrme-like mean field, containing both attractive and repulsive terms. The model parameters are found by fitting known values of binding energy and baryon density in the ground state of α\alpha matter, obtained from microscopic calculations by Clark and Wang. Thermodynamic quantities of α\alpha matter are calculated in the broad domains of temperature and baryon density, which can be reached in heavy-ion collisions at intermediate energies. The model predicts both first-order liquid-gas phase transition and Bose-Einstein condensation of α\alpha particles. We present the profiles of scaled variance, sound velocity and isochoric heat capacity along the isentropic trajectories of α\alpha matter. Strong density fluctuations are predicted in the vicinity of the critical point at temperature Tc14 MeVT_c\approx 14~\textrm{MeV} and density nc0.012 fm3n_c\approx 0.012~\textrm{fm}^{-3}.

Keywords

Cite

@article{arxiv.2009.13487,
  title  = {Phase diagram of alpha matter with Skyrme-like scalar interaction},
  author = {Leonid M. Satarov and Roman V. Poberezhnyuk and Igor N. Mishustin and Horst Stoecker},
  journal= {arXiv preprint arXiv:2009.13487},
  year   = {2021}
}

Comments

29 pages, 11 figures