We investigate the thermally activated magnetization switching of small ferromagnetic particles driven by an external magnetic field. For low uniaxial anisotropy the spins can be expected to rotate coherently, while for sufficient large anisotropy they should behave Ising-like, i.e., the switching should then be due to nucleation. We study this crossover from coherent rotation to nucleation for a classical three-dimensional Heisenberg model with finite anisotropy. The crossover is influenced by the size of the particle, the strength of the driving magnetic field, and the anisotropy. We discuss the relevant energy barriers which have to be overcome during the switching, and find theoretical arguments which yield the energetically favorable r...
Characterized by uniaxial magnetic anisotropy, the Stoner-Wohlfarth particle experiences a change in...
Characterized by uniaxial magnetic anisotropy, the Stoner-Wohlfarth particle experiences a change in...
Characterized by uniaxial magnetic anisotropy, the Stoner-Wohlfarth particle experiences a change in...
We investigate the thermally activated magnetization switching of small ferromagnetic particles driv...
Using Monte Carlo methods we investigate the thermally activated magnetization switching of small fe...
We investigate the thermal activated magnetisation reversal in a single ferromagneticnanoparticle wi...
We investigate the thermal activated magnetisation reversal in a single ferromagneticnanoparticle wi...
We investigate the thermal activated magnetisation reversal in a single ferromagneticnanoparticle wi...
We investigate the thermal activated magnetisation reversal in a single ferromagneticnanoparticle wi...
A nucleation picture of magnetization switching in single-domain ferromagnetic nanoparticles with hi...
We investigate the thermally activated magnetization switching in a classical Heisenberg spin chain ...
With decreasing particle size, different mechanisms dominate the thermally activated magnetization r...
We discuss numerical and theoretical results for models of magnetization switching in nanoparticles ...
The thermal activation of magnetization reversal in magnetic nanoparticles is controlled by the anis...
Abstract — A full analysis of magnetization reversal of a uniformly magnetized body by coherent rota...
Characterized by uniaxial magnetic anisotropy, the Stoner-Wohlfarth particle experiences a change in...
Characterized by uniaxial magnetic anisotropy, the Stoner-Wohlfarth particle experiences a change in...
Characterized by uniaxial magnetic anisotropy, the Stoner-Wohlfarth particle experiences a change in...
We investigate the thermally activated magnetization switching of small ferromagnetic particles driv...
Using Monte Carlo methods we investigate the thermally activated magnetization switching of small fe...
We investigate the thermal activated magnetisation reversal in a single ferromagneticnanoparticle wi...
We investigate the thermal activated magnetisation reversal in a single ferromagneticnanoparticle wi...
We investigate the thermal activated magnetisation reversal in a single ferromagneticnanoparticle wi...
We investigate the thermal activated magnetisation reversal in a single ferromagneticnanoparticle wi...
A nucleation picture of magnetization switching in single-domain ferromagnetic nanoparticles with hi...
We investigate the thermally activated magnetization switching in a classical Heisenberg spin chain ...
With decreasing particle size, different mechanisms dominate the thermally activated magnetization r...
We discuss numerical and theoretical results for models of magnetization switching in nanoparticles ...
The thermal activation of magnetization reversal in magnetic nanoparticles is controlled by the anis...
Abstract — A full analysis of magnetization reversal of a uniformly magnetized body by coherent rota...
Characterized by uniaxial magnetic anisotropy, the Stoner-Wohlfarth particle experiences a change in...
Characterized by uniaxial magnetic anisotropy, the Stoner-Wohlfarth particle experiences a change in...
Characterized by uniaxial magnetic anisotropy, the Stoner-Wohlfarth particle experiences a change in...