The temperature-dependent phase diagrams of the spin-3/2 Ising model on a FM/AFM two-layer lattice with a crystal field


ALBAYRAK E., Yigit A., Cengiz T.

PHYSICA A-STATISTICAL MECHANICS AND ITS APPLICATIONS, cilt.389, sa.13, ss.2522-2532, 2010 (SCI-Expanded) identifier identifier

Özet

The temperature-dependent phase diagrams of the spin-3/2 Ising model on a two-layer Bethe lattice with ferromagnetic (FM)/antiferromagnetic (AFM) intra-layer and either FM or AFM type inter-layer interactions are investigated under a constant magnetic field (H) and in the presence of a crystal field (D) by using exact recursion equations in a pairwise approach for coordination numbers q = 3, 4 and 6, in detail. In the light of the ground-state (GS) phase diagrams, the temperature-dependent phase diagrams of the model are obtained by studying the thermal variations of the order parameters, response functions and free energy. Then, they are illustrated on the (kT/J(1), J(3)/J(1)) and (kT/J(1), J(2)/J(1)) planes for the given system parameters. It is observed that the system exhibits first- and second-order phase transitions for all q values, and hence, in some cases, tricritical points. The existence of critical-end points and that of isolated points are also observed. The re-entrant behavior owes its presence to the two Neel temperatures, T(N), that are present for all q. (C) 2010 Elsevier B.V. All rights reserved.