Thin films of γ’-Fe4N were grown on polished (001) MgO substrates by molecular-beam epitaxy of iron in the presence of a gas flow from a rf atomic source. By means of x-ray diffraction, Mössbauer Spectroscopy, Rutherford backscattering/channeling, and scanning probe microscopy, it is shown that, with this method, single-phase, high-quality epitaxial thin films can be grown with a very smooth surface (root-mean-square roughness ∼0.4 nm). Magnetic measurements reveal square hysteresis loops, moderate coercivities (45 Oe for a 33 nm thick film) and complete in-plane orientation of the magnetization. These properties make the films interesting candidates for device applications
Magnetic epitaxy films of Fe4N have been grown by molecular beam epitaxial in a flow of atomic nitro...
Magnetic epitaxy films of Fe4N have been grown by molecular beam epitaxial in a flow of atomic nitro...
Epitaxial Fe4−xMnxN (x = 0, 1, 2, 3, and 4) thin films were successfully grown on MgO(0 0 1) single-...
Thin films of γ’-Fe4N were grown on polished (001) MgO substrates by molecular-beam epitaxy of iron ...
Thin films of γ’-Fe4N were grown on polished (001) MgO substrates by molecular-beam epitaxy of iron ...
Thin films of γ’-Fe4N were grown on polished (001) MgO substrates by molecular-beam epitaxy of iron ...
Thin films of γ’-Fe4N were grown on polished (001) MgO substrates by molecular-beam epitaxy of iron ...
Abstractγ’- Fe4N film was epitaxially grown on a SrTiO3(001) substrate by molecular beam epitaxy usi...
Iron nitride \ud compounds have been studied extensively during the last few decades \ud due t...
We have attempted to grow a-axis-oriented γ′-Fe4N epitaxial films with smooth surfaces at around 400...
International audienceThin films of iron nitrides have been prepared using an ion beam assisted evap...
Thin films of iron nitride have been grown on Cu(100) single-crystals by molecular beam epitaxy of F...
Thin films of iron nitride have been grown on Cu(100) single-crystals by molecular beam epitaxy of F...
Magnetic epitaxy films of Fe4N have been grown by molecular beam epitaxial in a flow of atomic nitro...
Magnetic epitaxy films of Fe4N have been grown by molecular beam epitaxial in a flow of atomic nitro...
Magnetic epitaxy films of Fe4N have been grown by molecular beam epitaxial in a flow of atomic nitro...
Magnetic epitaxy films of Fe4N have been grown by molecular beam epitaxial in a flow of atomic nitro...
Epitaxial Fe4−xMnxN (x = 0, 1, 2, 3, and 4) thin films were successfully grown on MgO(0 0 1) single-...
Thin films of γ’-Fe4N were grown on polished (001) MgO substrates by molecular-beam epitaxy of iron ...
Thin films of γ’-Fe4N were grown on polished (001) MgO substrates by molecular-beam epitaxy of iron ...
Thin films of γ’-Fe4N were grown on polished (001) MgO substrates by molecular-beam epitaxy of iron ...
Thin films of γ’-Fe4N were grown on polished (001) MgO substrates by molecular-beam epitaxy of iron ...
Abstractγ’- Fe4N film was epitaxially grown on a SrTiO3(001) substrate by molecular beam epitaxy usi...
Iron nitride \ud compounds have been studied extensively during the last few decades \ud due t...
We have attempted to grow a-axis-oriented γ′-Fe4N epitaxial films with smooth surfaces at around 400...
International audienceThin films of iron nitrides have been prepared using an ion beam assisted evap...
Thin films of iron nitride have been grown on Cu(100) single-crystals by molecular beam epitaxy of F...
Thin films of iron nitride have been grown on Cu(100) single-crystals by molecular beam epitaxy of F...
Magnetic epitaxy films of Fe4N have been grown by molecular beam epitaxial in a flow of atomic nitro...
Magnetic epitaxy films of Fe4N have been grown by molecular beam epitaxial in a flow of atomic nitro...
Magnetic epitaxy films of Fe4N have been grown by molecular beam epitaxial in a flow of atomic nitro...
Magnetic epitaxy films of Fe4N have been grown by molecular beam epitaxial in a flow of atomic nitro...
Epitaxial Fe4−xMnxN (x = 0, 1, 2, 3, and 4) thin films were successfully grown on MgO(0 0 1) single-...