Epitaxial Fe3O4(0 0 1) thin films (with a thickness in the range of 10–20 nm) grown on MgO substrates were characterized using low-energy electron diffraction (LEED), conversion electron Mössbauer spectroscopy (CEMS) and investigated using Rutherford backscattering spectrometry (RBS), channeling (RBS-C) experiments and X-ray reflectometry (XRR). The Mg out-diffusion from the MgO substrate into the film was observed for the directly-deposited Fe3O4/MgO(0 0 1) films. For the Fe3O4/Fe/MgO(0 0 1) films, the Mg diffusion was prevented by the Fe layer and the surface layer is always a pure Fe3O4 layer. Annealing and ion beam mixing induced a very large interface zone having a spinel and/or wustite formula in the Fe3O4-on-Fe film system
This work investigates the growth dynamic of the reactive molecular beam epitaxy of Fe3O4 films, and...
The work in this licentiate is devoted to investigating the epitaxial growth of thin Fe layers on Mg...
Epitaxial thin films of magnetite, Fe3-deltaO4, were produced by evaporating natural Fe or the Mossb...
Epitaxial Fe3O4(0 0 1) thin films (with a thickness in the range of 10–20 nm) grown on MgO substrate...
The interface reactions in an epitaxial 10 nm-thick Fe3O4/MgO(0 0 1) film were investigated by using...
Epitaxially-grown Fe3O4(0 0 1) thin films by reactive deposition on MgO(1 0 0) substrates were studi...
We investigate the stability of the bi-layer Fe3O4/Fe(0 0 1) films grown epitaxially on MgO(0 0 1) s...
Thin magnetite (Fe304) films and Fe304/MgO multilayers have been epitaxially grown by Molecular Beam...
Series of Fe3O4/MgO(001) and Fe3O4/Fe/MgO(001) films (single- and bi-layer films, respectively) with...
Fe3O4 is a candidate material for future spintronic device applications due to its predicted half me...
Strain relaxation studies in epitaxial magnetite, Fe3O4, thin films grown on MgAl2O4(100) substrates...
Strain relaxation studies in epitaxial magnetite (Fe3O4) thin films grown on MgO (100) substrates us...
The mobility of Fe in magnetite is a key ingredient towards a better understanding of its defect str...
DoctorWe have investigated magnetic and electronic properties of various Fe-based magnetic thin film...
This work describes the synthesis of high quality of epitaxial Fe3O4 ultrathin films and characteriz...
This work investigates the growth dynamic of the reactive molecular beam epitaxy of Fe3O4 films, and...
The work in this licentiate is devoted to investigating the epitaxial growth of thin Fe layers on Mg...
Epitaxial thin films of magnetite, Fe3-deltaO4, were produced by evaporating natural Fe or the Mossb...
Epitaxial Fe3O4(0 0 1) thin films (with a thickness in the range of 10–20 nm) grown on MgO substrate...
The interface reactions in an epitaxial 10 nm-thick Fe3O4/MgO(0 0 1) film were investigated by using...
Epitaxially-grown Fe3O4(0 0 1) thin films by reactive deposition on MgO(1 0 0) substrates were studi...
We investigate the stability of the bi-layer Fe3O4/Fe(0 0 1) films grown epitaxially on MgO(0 0 1) s...
Thin magnetite (Fe304) films and Fe304/MgO multilayers have been epitaxially grown by Molecular Beam...
Series of Fe3O4/MgO(001) and Fe3O4/Fe/MgO(001) films (single- and bi-layer films, respectively) with...
Fe3O4 is a candidate material for future spintronic device applications due to its predicted half me...
Strain relaxation studies in epitaxial magnetite, Fe3O4, thin films grown on MgAl2O4(100) substrates...
Strain relaxation studies in epitaxial magnetite (Fe3O4) thin films grown on MgO (100) substrates us...
The mobility of Fe in magnetite is a key ingredient towards a better understanding of its defect str...
DoctorWe have investigated magnetic and electronic properties of various Fe-based magnetic thin film...
This work describes the synthesis of high quality of epitaxial Fe3O4 ultrathin films and characteriz...
This work investigates the growth dynamic of the reactive molecular beam epitaxy of Fe3O4 films, and...
The work in this licentiate is devoted to investigating the epitaxial growth of thin Fe layers on Mg...
Epitaxial thin films of magnetite, Fe3-deltaO4, were produced by evaporating natural Fe or the Mossb...