The electronic, magnetic, and structural properties of Fe thin films epitaxially grown on ZnSe(001) have been investigated by spin polarized inverse photoemission, x-ray photoemission, magneto-optical Kerr effect, and scanning tunneling microscopy. Ultrathin Fe films present no magnetic remanence, while ferromagnetism develops for Fe coverage larger than 7 ML. However, even in this case, the electronic structure of empty states is quite different from that of high quality Fe(001) films. These findings are interpreted in terms of an evolution from a low coverage superparamagnetic phase towards a ferromagnetic phase typical of thicker films, whose electronic properties still remain different from those of ideal Fe(001) films. The consequences...
24th European Conference on Surface Science (ECOSS-24), Paris, FRANCE, SEP 04-08, 2006International ...
The use of a semiconductor barrier in heteroepitaxy with ferromagnetic metal electrodes describes a ...
The work in this licentiate is devoted to investigating the epitaxial growth of thin Fe layers on Mg...
The electronic, magnetic, and structural properties of Fe thin films epitaxially grown on ZnSe(001) ...
The electronic, magnetic, and structural properties of Fe thin films epitaxially grown on ZnSe(001) ...
The electronic, magnetic, and structural properties of Fe thin films epitaxially grown on ZnSe(001) ...
The electronic, magnetic, and structural properties of Fe thin films epitaxially grown on ZnSe(001) ...
The magnetism of epitaxial ultrathin films of Fe on ZnSe(001) has been investigated by X-ray magneti...
In the present thesis, the properties at ferromagnet/semiconductor interfaces, relevant for semicond...
We have performed first-principles electronic structure calculations to investigate the structural a...
The morphology, the atomic structure, and the strain of very thin Fe epilayers grown on ZnSe(001) ha...
The morphology, the atomic structure, and the strain of very thin Fe epilayers grown on ZnSe(001) ha...
International audienceThe morphology, the atomic structure, and the strain of very thin Fe epilayers...
DoctorWe have investigated magnetic and electronic properties of various Fe-based magnetic thin film...
International audienceWe have probed the interface of a ferromagnetic/semiconductor (FM/SC) heteroju...
24th European Conference on Surface Science (ECOSS-24), Paris, FRANCE, SEP 04-08, 2006International ...
The use of a semiconductor barrier in heteroepitaxy with ferromagnetic metal electrodes describes a ...
The work in this licentiate is devoted to investigating the epitaxial growth of thin Fe layers on Mg...
The electronic, magnetic, and structural properties of Fe thin films epitaxially grown on ZnSe(001) ...
The electronic, magnetic, and structural properties of Fe thin films epitaxially grown on ZnSe(001) ...
The electronic, magnetic, and structural properties of Fe thin films epitaxially grown on ZnSe(001) ...
The electronic, magnetic, and structural properties of Fe thin films epitaxially grown on ZnSe(001) ...
The magnetism of epitaxial ultrathin films of Fe on ZnSe(001) has been investigated by X-ray magneti...
In the present thesis, the properties at ferromagnet/semiconductor interfaces, relevant for semicond...
We have performed first-principles electronic structure calculations to investigate the structural a...
The morphology, the atomic structure, and the strain of very thin Fe epilayers grown on ZnSe(001) ha...
The morphology, the atomic structure, and the strain of very thin Fe epilayers grown on ZnSe(001) ha...
International audienceThe morphology, the atomic structure, and the strain of very thin Fe epilayers...
DoctorWe have investigated magnetic and electronic properties of various Fe-based magnetic thin film...
International audienceWe have probed the interface of a ferromagnetic/semiconductor (FM/SC) heteroju...
24th European Conference on Surface Science (ECOSS-24), Paris, FRANCE, SEP 04-08, 2006International ...
The use of a semiconductor barrier in heteroepitaxy with ferromagnetic metal electrodes describes a ...
The work in this licentiate is devoted to investigating the epitaxial growth of thin Fe layers on Mg...