paper

Multicritical behavior of the two-dimensional transverse Ising metamagnet in a longitudinal magnetic field

arXiv:1607.03930 · doi:10.1016/j.physa.2017.01.078

Abstract

Magnetic phenomena of the superantiferromagnetic Ising model in both uniform longitudinal () and transverse () magnetic fields are studied by employing a mean-field variational approach based on Peierls-Bogoliubov inequality for the free energy. A single-spin cluster is used to get the approximate thermodynamic properties of the model. The phase diagrams in the magnetic fields and temperature () planes, namely, and , are analyzed on an anisotropic square lattice for some values of the ratio , where and are the exchange interactions along the and directions, respectively. Depending on the range of the Hamiltonian parameters, one has only second-order transition lines, only first-order transition lines, or first- and second-order transition lines with the presence of tricritical points. The corresponding phase diagrams show no reentrant behavior along the first-order transition lines at low temperatures. These results are different from those obtained by using Effective Field Theory with the same cluster size.

12 pages, 4 figures