Nonequilibrium behavior and dynamic phase-transition properties of a kinetic Ising model under the influence of periodically oscillating random fields have been analyzed within the framework of effective-field theory based on a decoupling approximation. A dynamic equation of motion has been solved for a simple-cubic lattice (q = 6) by utilizing a Glauber-type stochastic process. Amplitude of the sinusoidally oscillating magnetic field is randomly distributed on the lattice sites according to bimodal and trimodal distribution functions. For a bimodal type of amplitude distribution, it is found in the high-frequency regime that the dynamic phase diagrams of the system in the temperature versus field amplitude plane resemble the corresponding ...
The dynamic behavior of a mixed spin-1/2 and spin-3/2 Ising model with a crystal-field interaction i...
The dynamic phase transition has been studied, within a mean-field approach, in the kinetic spin-3/2...
We study, within a mean-field approach, the stationary states of the kinetic Blume-Emery-Griffiths m...
Nonequilibrium behavior and dynamic phase-transition properties of a kinetic Ising model under the i...
The nonequilibrium or dynamic phase transitions are studied, within a mean-field approach, in the ki...
The stationary states of the random-field Ising model are determined through the master equation ap...
Dynamic behavior of a site diluted Ising ferromagnet in the presence of a periodically oscillating m...
We investigate by means of Monte Carlo simulations the dynamic phase transition of the two-dimension...
By using the effective-field theory based on the Glauber-type stochastic dynamics, we discuss the dy...
This work considers the behavior the Ising model of a ferromagnet subject to a strong, randomly swit...
The nonequilibrium dynamic phase transition in the kinetic Ising model in the presence of an oscilla...
Nonequilibrium magnetic properties in a two-dimensional kinetic mixed spin-2 and spin-5/2 Ising syst...
In this thesis I investigate some statistical mechanical models that have nonequilibrium features ei...
The dynamic behaviour of a two-sublattice spin-1 Ising model with a crystal-field interaction (D) in...
The kinetic spin-3/2 Ising system in the presence of crystal and external oscillating magnetic field...
The dynamic behavior of a mixed spin-1/2 and spin-3/2 Ising model with a crystal-field interaction i...
The dynamic phase transition has been studied, within a mean-field approach, in the kinetic spin-3/2...
We study, within a mean-field approach, the stationary states of the kinetic Blume-Emery-Griffiths m...
Nonequilibrium behavior and dynamic phase-transition properties of a kinetic Ising model under the i...
The nonequilibrium or dynamic phase transitions are studied, within a mean-field approach, in the ki...
The stationary states of the random-field Ising model are determined through the master equation ap...
Dynamic behavior of a site diluted Ising ferromagnet in the presence of a periodically oscillating m...
We investigate by means of Monte Carlo simulations the dynamic phase transition of the two-dimension...
By using the effective-field theory based on the Glauber-type stochastic dynamics, we discuss the dy...
This work considers the behavior the Ising model of a ferromagnet subject to a strong, randomly swit...
The nonequilibrium dynamic phase transition in the kinetic Ising model in the presence of an oscilla...
Nonequilibrium magnetic properties in a two-dimensional kinetic mixed spin-2 and spin-5/2 Ising syst...
In this thesis I investigate some statistical mechanical models that have nonequilibrium features ei...
The dynamic behaviour of a two-sublattice spin-1 Ising model with a crystal-field interaction (D) in...
The kinetic spin-3/2 Ising system in the presence of crystal and external oscillating magnetic field...
The dynamic behavior of a mixed spin-1/2 and spin-3/2 Ising model with a crystal-field interaction i...
The dynamic phase transition has been studied, within a mean-field approach, in the kinetic spin-3/2...
We study, within a mean-field approach, the stationary states of the kinetic Blume-Emery-Griffiths m...