We present a laterally resolved X-ray magnetic dichroism study of the magnetic proximity effect in a highly ordered oxide system, i.e. NiO films on Fe3O4(110). We found that the magnetic interface shows an ultrasharp electronic, magnetic and structural transition from the ferrimagnet to the antiferromagnet. The monolayer which forms the interface reconstructs to NiFe2O4 and exhibits an enhanced Fe and Ni orbital moment, possibly caused by bonding anisotropy or electronic interaction between Fe and Ni cations. The absence of spin-flop coupling for this crystallographic orientation can be explained by a structurally uncompensated interface and additional magnetoelastic effects
The structural and magnetic properties of the Fe/NiO(100) interface have been theoretically studied ...
Using nuclear resonant scattering of synchrotron radiation and density functional theory calculation...
Single crystalline Fe/NiO bilayers were epitaxially grown on Ag(001) and on MgO(001), and investigat...
We present a laterally resolved X-ray magnetic dichroism study of the magnetic proximity effect in a...
We investigated the influence of the interface orientation on the magnetic coupling for the (110), (...
We investigated the influence of the interface orientation on the magnetic coupling for the (110), (...
We investigated the influence of the interface orientation on the magnetic coupling for the (110), (...
Pohlmann T, Bertram F, Thien J, et al. Structural and magnetic investigation of the interfaces of wi...
The magnetic interlayer coupling of Fe3O4 across NiO is studied using Fe3O4/NiO/Fe3O4 trilayers epit...
Very high quality NiO films have been grown on Fe(001) by means of Molecular Beam Epitaxy. The chemi...
We present an investigation on the structural and magnetic properties of the interfaces of $\mathrm{...
We present an investigation on the structural and magnetic properties of the interfaces of Fe3O4 MgO...
We report experimental evidence for a transition in the interface coupling between an antiferromagne...
Using soft x-ray spectromicroscopy we show that NiO(001) exhibits a crystallographic and magnetic do...
The structural and magnetic properties of the Fe/NiO(100) interface have been theoretically studied ...
The structural and magnetic properties of the Fe/NiO(100) interface have been theoretically studied ...
Using nuclear resonant scattering of synchrotron radiation and density functional theory calculation...
Single crystalline Fe/NiO bilayers were epitaxially grown on Ag(001) and on MgO(001), and investigat...
We present a laterally resolved X-ray magnetic dichroism study of the magnetic proximity effect in a...
We investigated the influence of the interface orientation on the magnetic coupling for the (110), (...
We investigated the influence of the interface orientation on the magnetic coupling for the (110), (...
We investigated the influence of the interface orientation on the magnetic coupling for the (110), (...
Pohlmann T, Bertram F, Thien J, et al. Structural and magnetic investigation of the interfaces of wi...
The magnetic interlayer coupling of Fe3O4 across NiO is studied using Fe3O4/NiO/Fe3O4 trilayers epit...
Very high quality NiO films have been grown on Fe(001) by means of Molecular Beam Epitaxy. The chemi...
We present an investigation on the structural and magnetic properties of the interfaces of $\mathrm{...
We present an investigation on the structural and magnetic properties of the interfaces of Fe3O4 MgO...
We report experimental evidence for a transition in the interface coupling between an antiferromagne...
Using soft x-ray spectromicroscopy we show that NiO(001) exhibits a crystallographic and magnetic do...
The structural and magnetic properties of the Fe/NiO(100) interface have been theoretically studied ...
The structural and magnetic properties of the Fe/NiO(100) interface have been theoretically studied ...
Using nuclear resonant scattering of synchrotron radiation and density functional theory calculation...
Single crystalline Fe/NiO bilayers were epitaxially grown on Ag(001) and on MgO(001), and investigat...