Kuschel O, Pathé N, Schemme T, et al. Impact of Strain and Morphology on Magnetic Properties of Fe3O4/NiO Bilayers Grown on Nb:SrTiO3(001) and MgO(001). Materials. 2018;11(7): 1122.We present a comparative study of the morphology and structural as well as magnetic properties of crystalline Fe3O4/NiO bilayers grown on both MgO(001) and SrTiO3(001) substrates by reactive molecular beam epitaxy. These structures were investigated by means of X-ray photoelectron spectroscopy, low-energy electron diffraction, X-ray reflectivity and diffraction, as well as vibrating sample magnetometry. While the lattice mismatch of NiO grown on MgO(001) was only 0.8%, it was exposed to a lateral lattice mismatch of -6.9% if grown on SrTiO3. In the case of Fe3O4,...
[[abstract]]The present study grows a series of Fe3-xMgxO4 (0≦x≦1.5) films and systematically measur...
This work investigates the growth dynamic of the reactive molecular beam epitaxy of Fe3O4 films, and...
Epitaxial Fe3O4/NiO bilayers were epitaxially grown on MgO(001) and Al2O3(0001) substrates to inves...
We present a comparative study of the morphology and structural as well as magnetic properties of cr...
We present a comparative study of the morphology and structural as well as magnetic properties of cr...
Within this thesis, a comprehensive study of the initial growth process of pure Fe3O4 films and Fe3O...
Kuepper K, Kuschel O, Pathé N, et al. Electronic and magnetic structure of epitaxial Fe3O4(001)/NiO ...
Crystalline Fe3O4/NiO bilayers were grown on MgO(001) substrates using reactive molecular beam epita...
Wollschläger J, Schemme T, Kuschel O, Witziok M, Kuschel T, Kuepper K. Structural, magnetic and magn...
Ultrathin magnetite ($Fe_{3}O_{4}$) films are attractive for applications in the field of spintronic...
Epitaxial Fe3O4/NiO bilayers were epitaxially grown on MgO(001) and Al2O3(0001) substrates to invest...
Spinel ferrites are being considered for advanced spintronic applications. Here, we report on the ma...
We present an investigation on the structural and magnetic properties of the interfaces of $\mathrm{...
We report here on the growth of NiFe2O4 epitaxial thin films of different thickness (3 nm ¿ t ¿ 32 n...
Ferrites with (inverse) spinel structure display a large variety of electronic and magnetic properti...
[[abstract]]The present study grows a series of Fe3-xMgxO4 (0≦x≦1.5) films and systematically measur...
This work investigates the growth dynamic of the reactive molecular beam epitaxy of Fe3O4 films, and...
Epitaxial Fe3O4/NiO bilayers were epitaxially grown on MgO(001) and Al2O3(0001) substrates to inves...
We present a comparative study of the morphology and structural as well as magnetic properties of cr...
We present a comparative study of the morphology and structural as well as magnetic properties of cr...
Within this thesis, a comprehensive study of the initial growth process of pure Fe3O4 films and Fe3O...
Kuepper K, Kuschel O, Pathé N, et al. Electronic and magnetic structure of epitaxial Fe3O4(001)/NiO ...
Crystalline Fe3O4/NiO bilayers were grown on MgO(001) substrates using reactive molecular beam epita...
Wollschläger J, Schemme T, Kuschel O, Witziok M, Kuschel T, Kuepper K. Structural, magnetic and magn...
Ultrathin magnetite ($Fe_{3}O_{4}$) films are attractive for applications in the field of spintronic...
Epitaxial Fe3O4/NiO bilayers were epitaxially grown on MgO(001) and Al2O3(0001) substrates to invest...
Spinel ferrites are being considered for advanced spintronic applications. Here, we report on the ma...
We present an investigation on the structural and magnetic properties of the interfaces of $\mathrm{...
We report here on the growth of NiFe2O4 epitaxial thin films of different thickness (3 nm ¿ t ¿ 32 n...
Ferrites with (inverse) spinel structure display a large variety of electronic and magnetic properti...
[[abstract]]The present study grows a series of Fe3-xMgxO4 (0≦x≦1.5) films and systematically measur...
This work investigates the growth dynamic of the reactive molecular beam epitaxy of Fe3O4 films, and...
Epitaxial Fe3O4/NiO bilayers were epitaxially grown on MgO(001) and Al2O3(0001) substrates to inves...