Variational method study of the spin-1 Ising model with biaxial crystal-field anisotropy
arXiv:0803.0934
Abstract
The phase diagram of the spin-1 Ising model in the presence of a biaxial crystal-field anisotropy is studied within the framework of a variational approach, based on the Bogolyubov inequality for the free energy. We have investigated the effects of a transverse crystal-field on the phase diagram in the plane. Results obtained by using effective-field theory (EFT) on the honeycomb (% ), square () and simple cubic () lattices ( is the coordination number) show only continuous phase transitions, while the variational approach presents first-order and continuous phase transitions for % . We have also used the EFT for larger values of and we observe the presence of tricritical points in the phase diagrams, for , in accordance with the variational approach results.
4 pages, 2 figures, published in Phys. Rev. E, vol. 77, 012104 (2998)