We report here on the growth of NiFe2O4 epitaxial thin films of different thickness (3 nm ¿ t ¿ 32 nm) on single crystalline substrates having spinel (MgAl2O4) or perovskite (SrTiO3) structure. Ultrathin films, grown on any of those substrates, display a huge enhancement of the saturation magnetization: we will show that partial cationic inversion may account for this enhancement, although we will argue that suppression of antiparallel collinear spin alignment due to size-effects cannot be excluded. Besides, for thicker films, the magnetization of films on MAO is found to be similar to that of bulk ferrite; in contrast, the magnetization of films on STO is substantially lower than bulk. We discuss on the possible mechanisms leading to this ...
The strain induced magnetic anisotropy (MA) of epitaxial Co-ferrite (CFO) thin films grown on MgAl2O...
We have studied the magnetic properties of ultrathin magnetite (Fe3O4) films and explained them in r...
The authors here report epitaxial growth of the ferrimagnet NixFe3–xO4 (NFO) by atomic layer deposit...
We report here on the growth of NiFe2O4 epitaxial thin films of different thickness (3 nm ¿ t ¿ 32 n...
Spinel ferrites are being considered for advanced spintronic applications. Here, we report on the ma...
We investigate the sensitive interplay between magnetic, electronic, and structural properties in th...
Bulk NiFe2O4 is an insulating ferrimagnet. Here, we report on the epitaxial growth of spinel NiFe2O4...
[[abstract]]The present study grows a series of Fe3-xMgxO4 (0≦x≦1.5) films and systematically measur...
Thèse effectué en cotutelle entre le Laboratoire de Nanomagnétisme pour l'Hyperfréquence CNRS et l'I...
The physical properties of transition-metal oxides are strongly determined by the competition of cha...
Kuschel O, Pathé N, Schemme T, et al. Impact of Strain and Morphology on Magnetic Properties of Fe3O...
The nature of magnetism at thin film surfaces and interfaces is not yet fully understood, yet it is ...
The magnetic ferrites are of significant interest in the field of spintronics; being magnetic insula...
We have studied the magnetic anisotropy of nanometric CoFe2O4 (CFO) thin films grown on (100) SrTiO3...
A comprehensive study on growth of ferrimagnetic manganese zinc ferrite (Mn0.5Zn0.5Fe2O4) films on s...
The strain induced magnetic anisotropy (MA) of epitaxial Co-ferrite (CFO) thin films grown on MgAl2O...
We have studied the magnetic properties of ultrathin magnetite (Fe3O4) films and explained them in r...
The authors here report epitaxial growth of the ferrimagnet NixFe3–xO4 (NFO) by atomic layer deposit...
We report here on the growth of NiFe2O4 epitaxial thin films of different thickness (3 nm ¿ t ¿ 32 n...
Spinel ferrites are being considered for advanced spintronic applications. Here, we report on the ma...
We investigate the sensitive interplay between magnetic, electronic, and structural properties in th...
Bulk NiFe2O4 is an insulating ferrimagnet. Here, we report on the epitaxial growth of spinel NiFe2O4...
[[abstract]]The present study grows a series of Fe3-xMgxO4 (0≦x≦1.5) films and systematically measur...
Thèse effectué en cotutelle entre le Laboratoire de Nanomagnétisme pour l'Hyperfréquence CNRS et l'I...
The physical properties of transition-metal oxides are strongly determined by the competition of cha...
Kuschel O, Pathé N, Schemme T, et al. Impact of Strain and Morphology on Magnetic Properties of Fe3O...
The nature of magnetism at thin film surfaces and interfaces is not yet fully understood, yet it is ...
The magnetic ferrites are of significant interest in the field of spintronics; being magnetic insula...
We have studied the magnetic anisotropy of nanometric CoFe2O4 (CFO) thin films grown on (100) SrTiO3...
A comprehensive study on growth of ferrimagnetic manganese zinc ferrite (Mn0.5Zn0.5Fe2O4) films on s...
The strain induced magnetic anisotropy (MA) of epitaxial Co-ferrite (CFO) thin films grown on MgAl2O...
We have studied the magnetic properties of ultrathin magnetite (Fe3O4) films and explained them in r...
The authors here report epitaxial growth of the ferrimagnet NixFe3–xO4 (NFO) by atomic layer deposit...