A method to numerically simulate the thermally induced magnetic relaxation in two-dimensional (2D) nanoparticle ensembles is generalized for the case of applied perpendicular magnetic fields. The influence of the correlations of the nanoparticle magnetic moments and of the external field on the relaxation law and on the relaxation rate is studied. When you are citing the document, use the following link http://essuir.sumdu.edu.ua/handle/123456789/261
Some nontrivial aspects of the magnetic and structural characterization of hard-magnetic nanoparticl...
Computational and experimental results of thermally induced magnetization reversal in single-domain ...
The damping of magnetization processes in nanostructures is investigated by Fokker–Planck-type model...
A method to numerically simulate the thermally induced magnetic relaxation in two-dimensional (2D) n...
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...
Multi-core magnetic nanoparticles show promising features for biomedical applications. Their magne...
The investigation of a sizable thermal enhancement of magnetization is put forward for uniaxial fer...
We study relaxation behaviour in the two-dimensional assembly of magnetic nanoparticles (MNPs) with ...
The investigation of a sizable thermal enhancement of magnetization is put forward for uniaxial fer...
Some nontrivial aspects of the magnetic and structural characterization of hard-magnetic nanoparticl...
Some nontrivial aspects of the magnetic and structural characterization of hard-magnetic nanoparticl...
We report here a theory of relaxation of single domain magnetic nanoparticles, appropriate for analy...
Some nontrivial aspects of the magnetic and structural characterization of hard-magnetic nanoparticl...
The influence of the rotating magnetic field on the thermal stability of the precession modes of t...
Some nontrivial aspects of the magnetic and structural characterization of hard-magnetic nanoparticl...
Computational and experimental results of thermally induced magnetization reversal in single-domain ...
The damping of magnetization processes in nanostructures is investigated by Fokker–Planck-type model...
A method to numerically simulate the thermally induced magnetic relaxation in two-dimensional (2D) n...
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...
Multi-core magnetic nanoparticles show promising features for biomedical applications. Their magne...
The investigation of a sizable thermal enhancement of magnetization is put forward for uniaxial fer...
We study relaxation behaviour in the two-dimensional assembly of magnetic nanoparticles (MNPs) with ...
The investigation of a sizable thermal enhancement of magnetization is put forward for uniaxial fer...
Some nontrivial aspects of the magnetic and structural characterization of hard-magnetic nanoparticl...
Some nontrivial aspects of the magnetic and structural characterization of hard-magnetic nanoparticl...
We report here a theory of relaxation of single domain magnetic nanoparticles, appropriate for analy...
Some nontrivial aspects of the magnetic and structural characterization of hard-magnetic nanoparticl...
The influence of the rotating magnetic field on the thermal stability of the precession modes of t...
Some nontrivial aspects of the magnetic and structural characterization of hard-magnetic nanoparticl...
Computational and experimental results of thermally induced magnetization reversal in single-domain ...
The damping of magnetization processes in nanostructures is investigated by Fokker–Planck-type model...