Monte Carlo simulations combined with the Heisenberg model and Metropolis algorithm were used to study the equilibrium magnetic properties of magnetic multi-core nanoparticles of magnetite. Three effects were considered in this simulation: the Zeeman effect, magneto crystalline anisotropy, and dipolar interaction. Moreover, the influence of the size distribution (mean diameter and standard deviation) on the magnetization was analyzed. As an important result, a reduction of the equilibrium magnetization caused by the dipolar interaction and the magneto crystalline anisotropy was observed. On the other hand, the nanoparticle size increase produces an enhancement in the equilibrium magnetization, because of the lower influence of dipolar inter...
Altres ajuts: ICN2 is funded by the CERCA program/Generalitat de CatalunyaDense systems of magnetic ...
Aiming to analyze relevant aspects of interacting magnetic nanoparticle systems (frequently called i...
Aiming to analyze relevant aspects of interacting magnetic nanoparticle systems (frequently called i...
In this paper, a Monte Carlo simulation is carried out to evaluate the equilibrium magnetization of ...
In this paper, a Monte Carlo simulation is carried out to evaluate the equilibrium magnetization of ...
International audienceThe magnetization curves of densely packed single domain magnetic nanoparticle...
Le travail de thèse est consacré à l'étude numérique de nanoparticules (NPs) magnétiques core@shell ...
In our work, we used Monte Carlo technique to simulate the effect of dipolar interactions on the mag...
In our work, we used Monte Carlo technique to simulate the effect of dipolar interactions on the mag...
In our work, we used Monte Carlo technique to simulate the effect of dipolar interactions on the mag...
Multi-core magnetic nanoparticles show promising features for biomedical applications. Their magne...
Aiming to analyze relevant aspects of interacting magnetic nanoparticle systems (frequently called i...
This paper aims to analyze the competition of single particle anisotropy and interparticle interacti...
Aiming to analyze relevant aspects of interacting magnetic nanoparticle systems (frequently called i...
This paper aims to analyze the competition of single particle anisotropy and interparticle interacti...
Altres ajuts: ICN2 is funded by the CERCA program/Generalitat de CatalunyaDense systems of magnetic ...
Aiming to analyze relevant aspects of interacting magnetic nanoparticle systems (frequently called i...
Aiming to analyze relevant aspects of interacting magnetic nanoparticle systems (frequently called i...
In this paper, a Monte Carlo simulation is carried out to evaluate the equilibrium magnetization of ...
In this paper, a Monte Carlo simulation is carried out to evaluate the equilibrium magnetization of ...
International audienceThe magnetization curves of densely packed single domain magnetic nanoparticle...
Le travail de thèse est consacré à l'étude numérique de nanoparticules (NPs) magnétiques core@shell ...
In our work, we used Monte Carlo technique to simulate the effect of dipolar interactions on the mag...
In our work, we used Monte Carlo technique to simulate the effect of dipolar interactions on the mag...
In our work, we used Monte Carlo technique to simulate the effect of dipolar interactions on the mag...
Multi-core magnetic nanoparticles show promising features for biomedical applications. Their magne...
Aiming to analyze relevant aspects of interacting magnetic nanoparticle systems (frequently called i...
This paper aims to analyze the competition of single particle anisotropy and interparticle interacti...
Aiming to analyze relevant aspects of interacting magnetic nanoparticle systems (frequently called i...
This paper aims to analyze the competition of single particle anisotropy and interparticle interacti...
Altres ajuts: ICN2 is funded by the CERCA program/Generalitat de CatalunyaDense systems of magnetic ...
Aiming to analyze relevant aspects of interacting magnetic nanoparticle systems (frequently called i...
Aiming to analyze relevant aspects of interacting magnetic nanoparticle systems (frequently called i...