The magnetic relaxation and hysteresis of a system of single domain particles with dipolar interactions are studied by Monte Carlo simulations. We model the system by a chain of Heisenberg classical spins with randomly oriented easy-axis and log-normal distribution of anisotropy constants interacting through dipole-dipole interactions. Extending the so-called $T\ln(t/\tau_0)$ method to interacting systems, we show how to relate the simulated relaxation curves to the effective energy barrier distributions responsible for the long-time relaxation. We find that the relaxation law changes from quasi-logarithmic to power-law when increasing the interaction strength. This fact is shown to be due to the appearence of an increasing number of small ...
The dynamics of magnetization relaxation in ferrofluids are studied with statistical-mechanical theo...
We study the magnetic relaxation of a system of localized spins interacting through weak dipole int...
The damping of magnetization processes in nanostructures is investigated by Fokker–Planck-type model...
The magnetic relaxation and hysteresis of a system of single domain particles with dipolar interacti...
The most challenging problem in physics of disordered systems of magnetic nanoparticles is the inves...
The intriguing properties of magnetic nanoparticles have sparked a growing number of theoretical stu...
Time decays of low-dimensional magnetic dipoles with anisotropic energy barriers were studied theore...
Time decays of low-dimensional magnetic dipoles with anisotropic energy barriers were studied theore...
Time decays of low-dimensional magnetic dipoles with anisotropic energy barriers were studied theore...
The thermally activated magnetic relaxation in two-dimensional lattices of dipolar interacting nanop...
The thermally activated magnetic relaxation in two-dimensional lattices of dipolar interacting nanop...
We report here a theory of relaxation of single domain magnetic nanoparticles, appropriate for analy...
PACS. 75.45.+j Macroscopic quantum phenomena in magnetic systems [:AND:] 75.40.Mg Numerical simulati...
PACS. 76.20.+q – General theory of resonances and relaxations. PACS. 75.10.Hk – Classical spin model...
Atribution as a function of the time are analyzed and this study leads to a deeper knowledge of the ...
The dynamics of magnetization relaxation in ferrofluids are studied with statistical-mechanical theo...
We study the magnetic relaxation of a system of localized spins interacting through weak dipole int...
The damping of magnetization processes in nanostructures is investigated by Fokker–Planck-type model...
The magnetic relaxation and hysteresis of a system of single domain particles with dipolar interacti...
The most challenging problem in physics of disordered systems of magnetic nanoparticles is the inves...
The intriguing properties of magnetic nanoparticles have sparked a growing number of theoretical stu...
Time decays of low-dimensional magnetic dipoles with anisotropic energy barriers were studied theore...
Time decays of low-dimensional magnetic dipoles with anisotropic energy barriers were studied theore...
Time decays of low-dimensional magnetic dipoles with anisotropic energy barriers were studied theore...
The thermally activated magnetic relaxation in two-dimensional lattices of dipolar interacting nanop...
The thermally activated magnetic relaxation in two-dimensional lattices of dipolar interacting nanop...
We report here a theory of relaxation of single domain magnetic nanoparticles, appropriate for analy...
PACS. 75.45.+j Macroscopic quantum phenomena in magnetic systems [:AND:] 75.40.Mg Numerical simulati...
PACS. 76.20.+q – General theory of resonances and relaxations. PACS. 75.10.Hk – Classical spin model...
Atribution as a function of the time are analyzed and this study leads to a deeper knowledge of the ...
The dynamics of magnetization relaxation in ferrofluids are studied with statistical-mechanical theo...
We study the magnetic relaxation of a system of localized spins interacting through weak dipole int...
The damping of magnetization processes in nanostructures is investigated by Fokker–Planck-type model...