We present results of magnetic torque calculations using the fully relativistic spin-polarized Korringa-Kohn-Rostoker approach applied to small Co and Fe clusters deposited on the Pt(111) surface. From the magnetic torque one can derive amongst others the magnetic anisotropy energy (MAE). It was found that this approach is numerically much more stable and also computationally less demanding than using the magnetic force theorem that allows to calculate the MAE directly. Although structural relaxation effects were not included our results correspond reasonably well to recent experimental data
Magnetic anisotropy is a property of great importance both for applications (magnetic storage, ...) ...
Magnetic anisotropy is a property of great importance both for applications (magnetic storage, ...) ...
In this thesis, two selected topics in magnetism are studied using theoretical modelling and computa...
We present results of magnetic torque calculations using the fully relativistic spin-polarized Korri...
We present results of magnetic torque calculations using the fully relativistic spin-polarized Korri...
We present results of magnetic torque calculations using the fully relativistic spin-polarized Korri...
The spin-polarized relativistic version of the multiple scattering or the Korringa-Kohn-Rostoker met...
Calculations are reported of the magnetic anisotropy energy of two-dimensional (2D) Co nanostructure...
We have implemented screening in the fully relativistic spin-polarized version of the real-space Kor...
The electronic and magnetic properties of free FePt-clusters as well as of Co-clusters supported by ...
We carry out a systematic theoretical investigation of magnetocrystalline anisotropy (MCA) of L10 Fe...
The influence of the spin-orbit coupling on the magnetic structure of deposited transition-metal nan...
We present the magnetocrystalline anisotropy of disordered Ni1-xPtx and disordered fee Co1-xPtx allo...
A Green’s function embedding technique based on the fully relativistic spin-polarized Screened Korri...
We have undertaken theoretical studies of spin and orbital magnetic moments as well as magnetic anis...
Magnetic anisotropy is a property of great importance both for applications (magnetic storage, ...) ...
Magnetic anisotropy is a property of great importance both for applications (magnetic storage, ...) ...
In this thesis, two selected topics in magnetism are studied using theoretical modelling and computa...
We present results of magnetic torque calculations using the fully relativistic spin-polarized Korri...
We present results of magnetic torque calculations using the fully relativistic spin-polarized Korri...
We present results of magnetic torque calculations using the fully relativistic spin-polarized Korri...
The spin-polarized relativistic version of the multiple scattering or the Korringa-Kohn-Rostoker met...
Calculations are reported of the magnetic anisotropy energy of two-dimensional (2D) Co nanostructure...
We have implemented screening in the fully relativistic spin-polarized version of the real-space Kor...
The electronic and magnetic properties of free FePt-clusters as well as of Co-clusters supported by ...
We carry out a systematic theoretical investigation of magnetocrystalline anisotropy (MCA) of L10 Fe...
The influence of the spin-orbit coupling on the magnetic structure of deposited transition-metal nan...
We present the magnetocrystalline anisotropy of disordered Ni1-xPtx and disordered fee Co1-xPtx allo...
A Green’s function embedding technique based on the fully relativistic spin-polarized Screened Korri...
We have undertaken theoretical studies of spin and orbital magnetic moments as well as magnetic anis...
Magnetic anisotropy is a property of great importance both for applications (magnetic storage, ...) ...
Magnetic anisotropy is a property of great importance both for applications (magnetic storage, ...) ...
In this thesis, two selected topics in magnetism are studied using theoretical modelling and computa...