Cascade of phase transitions in a planar Dirac material
Abstract
We investigate a model of interacting Dirac fermions in dimensions with flavors and colors having the symmetry. In the large- limit, we find that the symmetry is spontaneously broken in a variety of ways. In the vacuum, when the parity-breaking flavor-singlet mass is varied, the ground state undergoes a sequence of first-order phase transitions, experiencing phases characterized by symmetry breaking with , bearing a close resemblance to the vacuum structure of three-dimensional QCD. At finite temperature and chemical potential, a rich phase diagram with first and second-order phase transitions and tricritical points is observed. Also exotic phases with spontaneous symmetry breaking of the form as , , and exist. For a large flavor-singlet mass, the increase of the chemical potential brings about consecutive first-order transitions that separate the low- phase diagram with vanishing fermion density from the high- region with a high fermion density.
Cite
@article{arxiv.2102.09089,
title = {Cascade of phase transitions in a planar Dirac material},
author = {Takuya Kanazawa and Mario Kieburg and Jacobus J. M. Verbaarschot},
journal= {arXiv preprint arXiv:2102.09089},
year = {2021}
}
Comments
44 pages. v2: references added