A unified model of molecular and atomistic spin dynamics is presented enabling simulations both in microcanonical and canonical ensembles without the necessity of additional phenomenological spin damping. Transfer of energy and angular momentum between the lattice and the spin systems is achieved by a phenomenological coupling term representing the spin-orbit interaction. The characteristic spectra of the spin and phonon systems are analyzed for different coupling strength and temperatures. The spin spectral density shows magnon modes together with the uncorrelated noise induced by the coupling to the lattice. The effective damping parameter is investigated showing an increase with both coupling strength and temperature. The model paves the...
Spin–lattice relaxation is a key open problem to understand the spin dynamics of single-molecule mag...
Author name used in this publication: C. H. Woo2008-2009 > Academic research: refereed > Publication...
We develop a microscopic theory of spin-lattice interactions in magnetic insulators, separating rigi...
A unified model of molecular and atomistic spin dynamics is presented enabling simulations both in m...
We present a computationally efficient and general first-principles based method for spin-lattice si...
A coupled atomistic spin and lattice dynamics approach is developed which merges the dynamics of the...
We develop an atomistic spin-lattice dynamics model for simulating energy relaxation in magnetic mat...
The spin and lattice dynamics of a ferromagnetic nanoparticle are studied via molecular dynamics and...
A combined dynamics for the spin and lattice degrees of freedom is proposed. For that we couple a He...
A combined dynamics for the spin and lattice degrees of freedom is proposed. For that we couple a He...
We developed a method which performs the coupled adiabatic spin and lattice dynamics based on the ti...
Author name used in this publication: C.H. Woo2011-2012 > Academic research: refereed > Publication ...
The spin and lattice dynamics of a ferromagnetic nanoparticle are studied via molecular dynamics and...
In the spirit of multi-scale modeling, we develop a theoretical framework for spin-lattice coupling ...
Spin-lattice relaxation is a key open problem to understand the spin dynamics of single-molecule mag...
Spin–lattice relaxation is a key open problem to understand the spin dynamics of single-molecule mag...
Author name used in this publication: C. H. Woo2008-2009 > Academic research: refereed > Publication...
We develop a microscopic theory of spin-lattice interactions in magnetic insulators, separating rigi...
A unified model of molecular and atomistic spin dynamics is presented enabling simulations both in m...
We present a computationally efficient and general first-principles based method for spin-lattice si...
A coupled atomistic spin and lattice dynamics approach is developed which merges the dynamics of the...
We develop an atomistic spin-lattice dynamics model for simulating energy relaxation in magnetic mat...
The spin and lattice dynamics of a ferromagnetic nanoparticle are studied via molecular dynamics and...
A combined dynamics for the spin and lattice degrees of freedom is proposed. For that we couple a He...
A combined dynamics for the spin and lattice degrees of freedom is proposed. For that we couple a He...
We developed a method which performs the coupled adiabatic spin and lattice dynamics based on the ti...
Author name used in this publication: C.H. Woo2011-2012 > Academic research: refereed > Publication ...
The spin and lattice dynamics of a ferromagnetic nanoparticle are studied via molecular dynamics and...
In the spirit of multi-scale modeling, we develop a theoretical framework for spin-lattice coupling ...
Spin-lattice relaxation is a key open problem to understand the spin dynamics of single-molecule mag...
Spin–lattice relaxation is a key open problem to understand the spin dynamics of single-molecule mag...
Author name used in this publication: C. H. Woo2008-2009 > Academic research: refereed > Publication...
We develop a microscopic theory of spin-lattice interactions in magnetic insulators, separating rigi...