We find that Ni L-2 edge x-ray magnetic linear dichroism is fully reversed for NiO(001) films on materials with reversed lattice mismatch. We relate this phenomenon to a preferential stabilization of magnetic S domains with main spin component either in or out of the plane, via dipolar interactions. This suggests a way to selectively control spin structures in 3d systems with small spin-orbit coupling.</p
We investigate the depth-dependent magnetization reversal and spin structure of Fe/NiO epitaxial bil...
We investigate the magnetic coupling at the Co/NiO interface using soft x-ray magnetic linear dichro...
We present a laterally resolved X-ray magnetic dichroism study of the magnetic proximity effect in a...
We report thickness dependence of magnetic linear dichroism (MLD) of in situ grown NiO(001) films on...
We have detected strong dichroism in the Ni L-2,L-3 x-ray absorption spectra of a monolayer NiO film...
Fe/NiO/MgO/Ag(001) films were grown epitaxially, and the Fe and NiO spin orientations were determine...
The domain structure of antiferromagnetic (AFM) NiO(100) has been investigated by nonmagnetic x-ray ...
The magnetic properties of antiferromagnetic (AFM) spins were investigated using x-ray magnetic line...
Fe/NiO/Fe/CoO/Ag(001) single crystalline films were grown epitaxially and investigated by x-ray magn...
Using soft x-ray spectromicroscopy we show that NiO(001) exhibits a crystallographic and magnetic do...
We present a laterally resolved X-ray magnetic dichroism study of the magnetic proximity effect in a...
Single crystalline Fe/NiO bilayers were epitaxially grown on Ag(001) and on MgO(001), and investigat...
Very high quality NiO films have been grown on Fe(001) by means of Molecular Beam Epitaxy. The chemi...
Photoemission electron microscopy (PEEM) with linearly polarized x-rays is used to determine the ori...
We have shown earlier [1,2] that magnetic linear dichroism in x-ray absorption is a valuable tool fo...
We investigate the depth-dependent magnetization reversal and spin structure of Fe/NiO epitaxial bil...
We investigate the magnetic coupling at the Co/NiO interface using soft x-ray magnetic linear dichro...
We present a laterally resolved X-ray magnetic dichroism study of the magnetic proximity effect in a...
We report thickness dependence of magnetic linear dichroism (MLD) of in situ grown NiO(001) films on...
We have detected strong dichroism in the Ni L-2,L-3 x-ray absorption spectra of a monolayer NiO film...
Fe/NiO/MgO/Ag(001) films were grown epitaxially, and the Fe and NiO spin orientations were determine...
The domain structure of antiferromagnetic (AFM) NiO(100) has been investigated by nonmagnetic x-ray ...
The magnetic properties of antiferromagnetic (AFM) spins were investigated using x-ray magnetic line...
Fe/NiO/Fe/CoO/Ag(001) single crystalline films were grown epitaxially and investigated by x-ray magn...
Using soft x-ray spectromicroscopy we show that NiO(001) exhibits a crystallographic and magnetic do...
We present a laterally resolved X-ray magnetic dichroism study of the magnetic proximity effect in a...
Single crystalline Fe/NiO bilayers were epitaxially grown on Ag(001) and on MgO(001), and investigat...
Very high quality NiO films have been grown on Fe(001) by means of Molecular Beam Epitaxy. The chemi...
Photoemission electron microscopy (PEEM) with linearly polarized x-rays is used to determine the ori...
We have shown earlier [1,2] that magnetic linear dichroism in x-ray absorption is a valuable tool fo...
We investigate the depth-dependent magnetization reversal and spin structure of Fe/NiO epitaxial bil...
We investigate the magnetic coupling at the Co/NiO interface using soft x-ray magnetic linear dichro...
We present a laterally resolved X-ray magnetic dichroism study of the magnetic proximity effect in a...