Magnetic epitaxy films of Fe4N have been grown by molecular beam epitaxial in a flow of atomic nitrogen from a radio-frequency plasma source. Various mixtures of nitrogen and hydrogen have been used in the source during evaporation of Fe-57 on a MgO(1 0 0) substrate. The admixture of hydrogen leads to an increase of the uptake of nitrogen by iron and it improves the crystalline properties of the films grown. It was found that the increased nitrogen uptake is due to a higher fraction of atomic N in the output of the source plus transport system. The sticking coefficient of N atoms to an iron and a Fe4N surface was found to be equal to unity under the conditions we used. The composition and the morphology of the films was studied with convers...
Thin films of γ’-Fe4N were grown on polished (001) MgO substrates by molecular-beam epitaxy of iron ...
14 pags., 8 figs., 1 tab.We report the formation of a stable iron nitride thin film following the ex...
Thin films of γ’-Fe4N were grown on polished (001) MgO substrates by molecular-beam epitaxy of iron ...
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...
Thin films of γ’-Fe4N were grown on polished (001) MgO substrates by molecular-beam epitaxy of iron ...
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...
We have grown thin layers of gamma'Fe4N on Cu(100) substrates by molecular beam epitaxy in a flow of...
We have grown thin layers of gamma'Fe4N on Cu(100) substrates by molecular beam epitaxy in a flow of...
We have grown thin layers of gamma'Fe4N on Cu(100) substrates by molecular beam epitaxy in a flow of...
We have grown thin layers of gamma'Fe4N on Cu(100) substrates by molecular beam epitaxy in a flow of...
International audienceThin films of iron nitrides have been prepared using an ion beam assisted evap...
Fe 2N and Fe 3N films were deposited in an r.f. glow discharge by introducing Fe(CO) 5 and NH 3 into...
Thin films of γ’-Fe4N were grown on polished (001) MgO substrates by molecular-beam epitaxy of iron ...
14 pags., 8 figs., 1 tab.We report the formation of a stable iron nitride thin film following the ex...
Thin films of γ’-Fe4N were grown on polished (001) MgO substrates by molecular-beam epitaxy of iron ...
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...
Thin films of γ’-Fe4N were grown on polished (001) MgO substrates by molecular-beam epitaxy of iron ...
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...
We have grown thin layers of gamma'Fe4N on Cu(100) substrates by molecular beam epitaxy in a flow of...
We have grown thin layers of gamma'Fe4N on Cu(100) substrates by molecular beam epitaxy in a flow of...
We have grown thin layers of gamma'Fe4N on Cu(100) substrates by molecular beam epitaxy in a flow of...
We have grown thin layers of gamma'Fe4N on Cu(100) substrates by molecular beam epitaxy in a flow of...
International audienceThin films of iron nitrides have been prepared using an ion beam assisted evap...
Fe 2N and Fe 3N films were deposited in an r.f. glow discharge by introducing Fe(CO) 5 and NH 3 into...
Thin films of γ’-Fe4N were grown on polished (001) MgO substrates by molecular-beam epitaxy of iron ...
14 pags., 8 figs., 1 tab.We report the formation of a stable iron nitride thin film following the ex...
Thin films of γ’-Fe4N were grown on polished (001) MgO substrates by molecular-beam epitaxy of iron ...