Atomistic modelling of magnetic materials provides unprecedented detail about the underlying physical processes that govern their macroscopic properties, and allows the simulation of complex effects such as surface anisotropy, ultrafast laser-induced spin dynamics, exchange bias, and microstructural effects. Here we present the key methods used in atomistic spin models which are then applied to a range of magnetic problems. We detail the parallelization strategies used which enable the routine simulation of extended systems with full atomistic resolution. © 2014 IOP Publishing Ltd
A Monte Carlo simulation was implemented for a square Isinglattice of interacting atomic spins to co...
This thesis presents a general formalism for a Density Functional Theory description of the magneti...
Atomistic spin model simulations are immensely useful in determining temperature dependent magnetic ...
Atomistic modelling of magnetic materials provides unprecedented detail about the underlying physica...
We describe the process of multiscale modelling of magnetic materials, based on atomistic models cou...
The topic of this Thesis is magnetization dynamics on atomic length scales. A computational scheme, ...
The purpose of this book is to provide a theoretical foundation and an understanding of atomistic sp...
We present a computationally efficient and general first-principles based method for spin-lattice si...
Monte Carlo algorithms are frequently used in atomistic simulations, including for computation of ma...
Iron oxides such as magnetite, maghemite and cobalt ferrite are of huge importance to biomedical app...
Author name used in this publication: C. H. Woo2008-2009 > Academic research: refereed > Publication...
The spin and lattice dynamics of a ferromagnetic nanoparticle are studied via molecular dynamics and...
This program has been imported from the CPC Program Library held at Queen's University Belfast (1969...
Les propriétés magnétiques des matériaux sont fortement connectées à leur structure cristallographiq...
The atomic-scale and mesoscopic physics of magnetic nanostructures is reviewed. Emphasis is on the d...
A Monte Carlo simulation was implemented for a square Isinglattice of interacting atomic spins to co...
This thesis presents a general formalism for a Density Functional Theory description of the magneti...
Atomistic spin model simulations are immensely useful in determining temperature dependent magnetic ...
Atomistic modelling of magnetic materials provides unprecedented detail about the underlying physica...
We describe the process of multiscale modelling of magnetic materials, based on atomistic models cou...
The topic of this Thesis is magnetization dynamics on atomic length scales. A computational scheme, ...
The purpose of this book is to provide a theoretical foundation and an understanding of atomistic sp...
We present a computationally efficient and general first-principles based method for spin-lattice si...
Monte Carlo algorithms are frequently used in atomistic simulations, including for computation of ma...
Iron oxides such as magnetite, maghemite and cobalt ferrite are of huge importance to biomedical app...
Author name used in this publication: C. H. Woo2008-2009 > Academic research: refereed > Publication...
The spin and lattice dynamics of a ferromagnetic nanoparticle are studied via molecular dynamics and...
This program has been imported from the CPC Program Library held at Queen's University Belfast (1969...
Les propriétés magnétiques des matériaux sont fortement connectées à leur structure cristallographiq...
The atomic-scale and mesoscopic physics of magnetic nanostructures is reviewed. Emphasis is on the d...
A Monte Carlo simulation was implemented for a square Isinglattice of interacting atomic spins to co...
This thesis presents a general formalism for a Density Functional Theory description of the magneti...
Atomistic spin model simulations are immensely useful in determining temperature dependent magnetic ...