Atomic and continuum effects in L10 magnets are investigated. Emphasis is on the competition between ferromagnetism, antiferromagnetism, and noncollinear order in both perfect and imperfect structures, and on the temperature dependence of the magnetic anisotropy. The applicability of micromagnetic and atomistic approaches depends on the length scales involved, but there is a broad range of phenomena where both can be used
We describe a `disordered local moment' (DLM) first-principles electronic structure theory which dem...
The central goals of nanoscale magnetic materials science are the self-assembly of the smallest stru...
The central goals of nanoscale magnetic materials science are the self-assembly of the smallest stru...
The atomic-scale and mesoscopic physics of magnetic nanostructures is reviewed. Emphasis is on the d...
The atomic-scale and mesoscopic physics of magnetic nanostructures is reviewed. Emphasis is on the d...
The temperature dependence of the magnetic anisotropy of ferromagnetic materials is analyzed. Simple...
The magnetism of magnetic surface alloys such as Fe–Pt on Pt(997) has been investigated by micromagn...
We use first-principles calculations to investigate how deviations from perfect chemical order affec...
Structural and magnetic properties of substituted L10 compounds are investigated. Focus is on L10 st...
The temperature dependence of the magnetic anisotropy of ferromagnetic materials is analyzed. Simple...
L10 FePt is a technologically important material for a range of novel data storage applications. In ...
First-principle supercell calculations are used to determine how 3d elemental additions, especially ...
Structural and magnetic properties of substituted L10 compounds are investigated. Focus is on L10 st...
The magnetism of magnetic surface alloys such as Fe–Pt on Pt(997) has been investigated by micromagn...
Density functional theory is used to investigate how atomic substitutions modify the magnetization a...
We describe a `disordered local moment' (DLM) first-principles electronic structure theory which dem...
The central goals of nanoscale magnetic materials science are the self-assembly of the smallest stru...
The central goals of nanoscale magnetic materials science are the self-assembly of the smallest stru...
The atomic-scale and mesoscopic physics of magnetic nanostructures is reviewed. Emphasis is on the d...
The atomic-scale and mesoscopic physics of magnetic nanostructures is reviewed. Emphasis is on the d...
The temperature dependence of the magnetic anisotropy of ferromagnetic materials is analyzed. Simple...
The magnetism of magnetic surface alloys such as Fe–Pt on Pt(997) has been investigated by micromagn...
We use first-principles calculations to investigate how deviations from perfect chemical order affec...
Structural and magnetic properties of substituted L10 compounds are investigated. Focus is on L10 st...
The temperature dependence of the magnetic anisotropy of ferromagnetic materials is analyzed. Simple...
L10 FePt is a technologically important material for a range of novel data storage applications. In ...
First-principle supercell calculations are used to determine how 3d elemental additions, especially ...
Structural and magnetic properties of substituted L10 compounds are investigated. Focus is on L10 st...
The magnetism of magnetic surface alloys such as Fe–Pt on Pt(997) has been investigated by micromagn...
Density functional theory is used to investigate how atomic substitutions modify the magnetization a...
We describe a `disordered local moment' (DLM) first-principles electronic structure theory which dem...
The central goals of nanoscale magnetic materials science are the self-assembly of the smallest stru...
The central goals of nanoscale magnetic materials science are the self-assembly of the smallest stru...