English

Binary lattice-gases of particles with soft exclusion: Exact phase diagrams for tree-like lattices

Statistical Mechanics 2021-09-07 v3

Abstract

We study equilibrium properties of binary lattice-gases comprising AA and BB particles, which undergo continuous exchanges with their respective reservoirs, maintained at chemical potentials μA=μB=μ\mu_A = \mu_B = \mu. The particles interact via on-site hard-core exclusion and also between the nearest-neighbours: there are a soft repulsion for ABAB pairs and interactions of arbitrary strength JJ, positive or negative, for AAAA and BBBB pairs. For tree-like Bethe and Husimi lattices, we determine the full phase diagram of such a ternary mixture of particles and voids. We show that for JJ being above a lattice-dependent threshold value, the critical behaviour is similar: the system undergoes a transition at μ=μc\mu = \mu_c from a phase with equal mean densities of species into a phase with a spontaneously broken symmetry, in which the mean densities are no longer equal. Depending on the value of JJ, this transition can be either continuous or of the first order. For sufficiently big negative JJ, the behaviour on the two lattices becomes markedly different: while for the Bethe lattice there exists a continuous transition into a phase with an alternating order followed by a continuous re-entrant transition into a disordered phase, an alternating order phase is absent on the Husimi lattice due to strong frustration effects.

Keywords

Cite

@article{arxiv.2104.09581,
  title  = {Binary lattice-gases of particles with soft exclusion: Exact phase diagrams for tree-like lattices},
  author = {Dmytro Shapoval and Maxym Dudka and Olivier Bénichou and Gleb Oshanin},
  journal= {arXiv preprint arXiv:2104.09581},
  year   = {2021}
}

Comments

38 pages, 16 figures