Numerical modeling of random magnetization switching in uniaxial particles is studied by using Monte Carlo simulations of magnetization dynamics driven by a jump-noise process. Numerical results on cumulative distribution functions for random switching (exit) times are reported along with the numerical testing of the Kramers-Brown approximation
International audienceWe propose a stochastic approach for the description of the time evolution of ...
Effects of thermal activation are included in micromagnetic simulations by adding a random thermal f...
A nucleation picture of magnetization switching in single-domain ferromagnetic nanoparticles with hi...
Numerical modeling of random magnetization switching in uniaxial particles is studied by using Monte...
In the paper, a jump-noise process is introduced in magnetization dynamics equations in order to acc...
Nonlinear magnetization dynamic process in nano-scale magnetic systems is of great scientific intere...
We present analytical calculations and kinetic Monte-Carlo modeling of rate-dependent behavior of sw...
It is proposed to use a jump-noise process in magnetization dynamics equations to account for therma...
Using Monte Carlo methods we investigate the thermally activated magnetization switching of small fe...
Magnetization reversal in magnetic nanostructures is investigated numerically over time-scales rangi...
An averaging technique is applied to random magnetization dynamics driven by a jump-noise process. T...
Significant progress has been made over the last few years in our understanding of the physics of ra...
An approach to modeling thermal noise effects in stochastic magnetization dynamics using a jump-nois...
The viability of the time quantified Metropolis Monte Carlo technique to describe the dynamics of ma...
For the description of thermally activated dynamics in systems of classical magnetic moments numeric...
International audienceWe propose a stochastic approach for the description of the time evolution of ...
Effects of thermal activation are included in micromagnetic simulations by adding a random thermal f...
A nucleation picture of magnetization switching in single-domain ferromagnetic nanoparticles with hi...
Numerical modeling of random magnetization switching in uniaxial particles is studied by using Monte...
In the paper, a jump-noise process is introduced in magnetization dynamics equations in order to acc...
Nonlinear magnetization dynamic process in nano-scale magnetic systems is of great scientific intere...
We present analytical calculations and kinetic Monte-Carlo modeling of rate-dependent behavior of sw...
It is proposed to use a jump-noise process in magnetization dynamics equations to account for therma...
Using Monte Carlo methods we investigate the thermally activated magnetization switching of small fe...
Magnetization reversal in magnetic nanostructures is investigated numerically over time-scales rangi...
An averaging technique is applied to random magnetization dynamics driven by a jump-noise process. T...
Significant progress has been made over the last few years in our understanding of the physics of ra...
An approach to modeling thermal noise effects in stochastic magnetization dynamics using a jump-nois...
The viability of the time quantified Metropolis Monte Carlo technique to describe the dynamics of ma...
For the description of thermally activated dynamics in systems of classical magnetic moments numeric...
International audienceWe propose a stochastic approach for the description of the time evolution of ...
Effects of thermal activation are included in micromagnetic simulations by adding a random thermal f...
A nucleation picture of magnetization switching in single-domain ferromagnetic nanoparticles with hi...