Ferrimagnetism in the Heisenberg-Ising Bilayer with Magnetically Non-equivalent Planes
arXiv:1310.1457 · doi:10.1016/j.physa.2013.10.013
Abstract
The Pair Approximation method is applied to the antiferromagnetic Heisenberg-Ising spin-1/2 bilayer with a simple cubic crystalline structure. The method allows for self-consistent calculations of thermodynamic quantities, based on the determination of Gibbs free-energy. In the paper the phase diagrams and planar magnetizations are calculated for the system in question. Special attention is paid to the case of magnetically non-equivalent planes, one of which is additionally randomly diluted. The occurrence of a compensation phenomenon is found and the compensation temperature is discussed for such a system. The characteristic concentration of magnetic atoms , below which the compensation phenomenon vanishes, is examined as a function of the Hamiltonian parameters.
References in corpus (8)
- High-Voltage Terminal Test of Test Stand for 1-MV Electrostatic Accelerator
- Enhancement of Real Time EPICS IOC PV Management for Data Archiving System
- Magnetocaloric effect in one-dimensional antiferromagnets
- Magnetocaloric effect in the frustrated square lattice J1-J2 model
- Magnetocaloric effect in two-dimensional spin-1/2 antiferromagnets
- The influence of interplanar coupling on the entropy and specific heat of the bilayer ferromagnet
- Ferrimagnetism in the Heisenberg-Ising Bilayer with Magnetically Non-equivalent Planes
- Critical Temperature Studies of the Anisotropic Bi- and Multilayer Heisenberg Ferromagnets in Pair Approximation
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- Compensation temperature in spin- Ising trilayers: A Monte Carlo study
- Monte Carlo study of an anisotropic Ising multilayer with antiferromagnetic interlayer couplings
- Thermodynamic behaviour of magnetocaloric quantities in spin-1/2 Ising square trilayer
- The dynamic magnetic behaviors of the Blume-Capel Ising bilayer system
- Ising versus Potts criticality in a low-temperature magnetothermodynamics of a frustrated spin-1/2 Heisenberg triangular bilayer
- Critical temperature of two-dimensional hydrogenated multilayer graphene-based diluted ferromagnet
- The Pair Approximation method for the ferromagnetic Heisenberg model with spin and arbitrary range of interactions. Application for the magnetic semiconductor CrIAs