Half-metallic ferrimagnetic materials such as Fe₃O₄ are of interest for use in spintronic devices. These devices exploit both the spin and charge of an electron in spin-dependent charge transport. Epitaxial thin films of Fe₃O₄ have been grown on the three low-index planes of gold by electrodeposition. On Au(110), a [110] Fe₃O₄ orientation that is aligned with the underlying Au(110) substrate is observed. Thin films on Au(100) grow with three different orientations: [100], [111], and [511]. On Au(111), both [111] and [511] orientations of Fe₃O₄ are observed. The [511] orientations are the result of twinning on {111} planes. A polarization value of approximately -40% at the Fermi level was measured by spin-polarized photoemission at room temp...
Electron-capture spectroscopy has been used to investigate long-ranged and short-ranged two-dimensio...
DoctorWe have investigated magnetic and electronic properties of various Fe-based magnetic thin film...
12 pags, 10 figsWe have grown epitaxial films a few atomic layers thick of iron oxides on ruthenium....
An epitaxial film of Fe₃O₄ was electrodeposited from aqueous solution onto single-crystal Au(111) at...
The surface and interface structure as well as the electronic properties of thin epitaxial Fe3O4(111...
Many materials have been theoretically predicted to be half-metallic, and hence suitable for use as ...
Epitaxial Prussian blue (PB) films are deposited electrochemically onto a Au(110) substrate. High-re...
Magnetite (Fe₃O₄), ferrihydrite (Fe 10O14(OH)2), and iron (Fe) films were electrodeposited by cathod...
This article may be downloaded for personal use only. Any other use requires prior permission of the...
Iron oxide films epitaxially grown on close-packed metal single crystal substrates exhibit nearly-pe...
In situ spin-resolved photoemission studies have been performed on expitaxial Fe3O4 thin films grown...
International audienceThis paper presents a review of the research which is focused on ferrite thin ...
International audienceEpitaxial iron oxide layers with different orientations were grown on Ag(001) ...
The spin-dependent electronic structure of thin epitaxial films of magnetite, Fe3O4(111), has been i...
Spin- and angle-resolved photoelectron spectroscopy was applied to study the spin-dependent electron...
Electron-capture spectroscopy has been used to investigate long-ranged and short-ranged two-dimensio...
DoctorWe have investigated magnetic and electronic properties of various Fe-based magnetic thin film...
12 pags, 10 figsWe have grown epitaxial films a few atomic layers thick of iron oxides on ruthenium....
An epitaxial film of Fe₃O₄ was electrodeposited from aqueous solution onto single-crystal Au(111) at...
The surface and interface structure as well as the electronic properties of thin epitaxial Fe3O4(111...
Many materials have been theoretically predicted to be half-metallic, and hence suitable for use as ...
Epitaxial Prussian blue (PB) films are deposited electrochemically onto a Au(110) substrate. High-re...
Magnetite (Fe₃O₄), ferrihydrite (Fe 10O14(OH)2), and iron (Fe) films were electrodeposited by cathod...
This article may be downloaded for personal use only. Any other use requires prior permission of the...
Iron oxide films epitaxially grown on close-packed metal single crystal substrates exhibit nearly-pe...
In situ spin-resolved photoemission studies have been performed on expitaxial Fe3O4 thin films grown...
International audienceThis paper presents a review of the research which is focused on ferrite thin ...
International audienceEpitaxial iron oxide layers with different orientations were grown on Ag(001) ...
The spin-dependent electronic structure of thin epitaxial films of magnetite, Fe3O4(111), has been i...
Spin- and angle-resolved photoelectron spectroscopy was applied to study the spin-dependent electron...
Electron-capture spectroscopy has been used to investigate long-ranged and short-ranged two-dimensio...
DoctorWe have investigated magnetic and electronic properties of various Fe-based magnetic thin film...
12 pags, 10 figsWe have grown epitaxial films a few atomic layers thick of iron oxides on ruthenium....