arXiv:1806.10857·v2·Nuclear Theory
Phase Transition in Interacting Boson System at Finite Temperatures
D. Anchishkin🇺🇦 · I. Mishustin🇩🇪 · H. Stoecker🇩🇪
Abstract
Thermodynamical properties of an interacting boson system at finite temperatures and zero chemical potential are studied within the framework of the Skyrme-like mean-field toy model. It is assumed that the mean field contains both attractive and repulsive terms. Self-consistency relations between the mean field and thermodynamic functions are derived. It is shown that for sufficiently strong attractive interactions this system develops a first-order phase transition via formation of Bose condensate. An interesting prediction of the model is that the condensed phase is characterized by a constant total density of particles. The thermodynamical characteristics of the system are calculated for the liquid-gas and condensed phases. The energy density exhibits a jump at the critical temperature.
Comments: 17 pages, 7 figures, PDFLaTex, tiny corrections in the text were added