Using first-principles calculations, we demonstrate that an Fe monolayer can assume very different magnetic phases on hcp (0001) and fcc (111) surfaces of 4d- and 5d-transition metals. Due to the substrates' d-band filling, the nearest-neighbor exchange coupling of Fe changes gradually from antiferromagnetic (AFM) for Fe films on Tc, Re, Ru, and Os to ferromagnetic on Rh, Ir, Pd, and Pt. In combination with the topological frustration on the triangular lattice of these surfaces the AFM coupling results in a 120 degrees Neel structure for Fe on Re and Ru and an unexpected double-row-wise AFM structure on Rh, which is a superposition of left- and right-rotating 90 degrees spin spirals
We investigate complex spin structures of frustrated two-dimensional Cr, Mn. and Fe monolayer magnet...
The magnetic structure of a Cr monolayer on a W(110) substrate is investigated by means of first-pri...
Based on first-principles calculations we analyze the magnetic order and the exchange interactions i...
Mapping the total energies obtained from first principles calculations to model Hamiltonians is a po...
In this thesis, we investigate the magnetic properties of 3$\textit{d}$ transition-metal monolayers ...
In this thesis, we investigate the magnetic properties of 3d transition-metal monolayers on 4d trans...
The electronic and magnetic properties of Fe on Ir(111) have been investigated experimentally by spi...
peer reviewedWe investigate the interplay between the structural reconstruction and the magnetic pro...
We employ the full-potential linearized augmented plane-wave method to report a systematic density-f...
Motivated by a recent experimental observation of a complex magnetic structure (Takada et al 2013 J....
We have used the symmetrized fall-potential linearized augmented plane wave method for sIab geometry...
We report the direct observation of a theoretically predicted magnetic ground state in a monolayer F...
peer reviewedWe study the magnetic interactions in atomic layers of Fe and 5d transition-metals such...
We report systematic first-principles calculations based on the full-potential linearized augmented ...
We present detailed investigations of the magnetic properties of an Fe monolayer on W and Ta (110) s...
We investigate complex spin structures of frustrated two-dimensional Cr, Mn. and Fe monolayer magnet...
The magnetic structure of a Cr monolayer on a W(110) substrate is investigated by means of first-pri...
Based on first-principles calculations we analyze the magnetic order and the exchange interactions i...
Mapping the total energies obtained from first principles calculations to model Hamiltonians is a po...
In this thesis, we investigate the magnetic properties of 3$\textit{d}$ transition-metal monolayers ...
In this thesis, we investigate the magnetic properties of 3d transition-metal monolayers on 4d trans...
The electronic and magnetic properties of Fe on Ir(111) have been investigated experimentally by spi...
peer reviewedWe investigate the interplay between the structural reconstruction and the magnetic pro...
We employ the full-potential linearized augmented plane-wave method to report a systematic density-f...
Motivated by a recent experimental observation of a complex magnetic structure (Takada et al 2013 J....
We have used the symmetrized fall-potential linearized augmented plane wave method for sIab geometry...
We report the direct observation of a theoretically predicted magnetic ground state in a monolayer F...
peer reviewedWe study the magnetic interactions in atomic layers of Fe and 5d transition-metals such...
We report systematic first-principles calculations based on the full-potential linearized augmented ...
We present detailed investigations of the magnetic properties of an Fe monolayer on W and Ta (110) s...
We investigate complex spin structures of frustrated two-dimensional Cr, Mn. and Fe monolayer magnet...
The magnetic structure of a Cr monolayer on a W(110) substrate is investigated by means of first-pri...
Based on first-principles calculations we analyze the magnetic order and the exchange interactions i...