English

The Pair Approximation method for the ferromagnetic Heisenberg model with spin $S=1$ and arbitrary range of interactions. Application for the magnetic semiconductor CrIAs

Statistical Mechanics 2020-07-08 v2 Mesoscale and Nanoscale Physics Materials Science

Abstract

The Pair Approximation method has been formulated for the isotropic ferromagnetic Heisenberg model with spin S=1S=1. The exchange interactions of arbitrary range have been taken into account. The single-ion anisotropy has been considered as well as the external magnetic field. Within the method, the Gibbs free-energy has been derived, from which all thermodynamic properties can be self-consistently obtained. In order to illustrate the developed formalism, the numerical calculations have been performed for CrIAs planar magnetic semiconductor, a hypothetical material whose existence has been recently predicted by the Density Functional Theory-based calculations. For this model material, all the relevant thermodynamic magnetic properties have been studied. The numerical results have been presented in the figures and discussed.

Keywords

Cite

@article{arxiv.2006.08318,
  title  = {The Pair Approximation method for the ferromagnetic Heisenberg model with spin $S=1$ and arbitrary range of interactions. Application for the magnetic semiconductor CrIAs},
  author = {T. Balcerzak and K. Szałowski},
  journal= {arXiv preprint arXiv:2006.08318},
  year   = {2020}
}