Dynamic behaviors of the hexagonal Ising nanowire
arXiv:1312.7786 · doi:10.1016/j.physleta.2014.01.026
Abstract
By utilizing the effective-field theory based on the Glauber-type stochastic dynamics, the dynamic behaviors of the hexagonal Ising nanowire (HIN) system in the presence of a time dependent magnetic field are obtained. The time variations of average order parameters and the thermal behavior of the dynamic order parameters are studied to analyze the nature of transitions and to obtain the dynamic phase transition points. The dynamic phase diagrams are introduced in the plane of the reduced temperature versus magnetic field amplitude. The dynamic phase diagrams exhibit coexistence phase region, several ordered phases and critical point as well as a reentrant behavior.
12 Pages, 4 Figures
References in corpus (2)
Cited by in corpus (4)
- Cylindrical Ising Nanowire in an Oscillating Magnetic Field and Dynamic Compensation Temperature
- On the failure of effective-field theory in predicting a spurious spontaneous ordering and phase transition of Ising nanoparticles, nanoislands, nanotubes and nanowires
- Rodlike Heisenberg nanomagnet driven by propagating magnetic field: Nonequilibrium phase transition
- Dynamic phase transitions in a ferromagnetic thin film system: A Monte Carlo simulation study