[Fe/Fe4N]N multilayers with high saturation magnetization were prepared on MgO(200) substrate, by the DC reactive magnetron sputtering and then annealed at higher temperature. Their structural and magnetic properties were investigated. Epitaxial growth of α-Fe and γ’-Fe4N were demonstrated on MgO, and then excellent [Fe/Fe4N]N was obtained. Though the saturation magnetizations of the as-deposited [Fe/Fe4N]N are slightly below the average value of those of α-Fe and γ’-Fe4N, the saturation magnetization of the annealed [Fe(3.04 nm)/Fe4N(3.04 nm)]5 increases up to 1850 emu/cc, 32 % larger than that of α-Fe film. N atom diffusion from the γ’-Fe4N to the α-Fe layer at high temperature greatly improves the saturation magnetization
The structural and magnetic properties of Fe/Zn films prepared by thermal evaporation have been stud...
We present a systematic study to address a longstanding mystery in magnetic materials and magnetism,...
Abstractγ’- Fe4N film was epitaxially grown on a SrTiO3(001) substrate by molecular beam epitaxy usi...
We have grown phase-pure, buffer-free, and epitaxial α -Fe and γ′-Fe4Nγ′-Fe4N thin films by RF magn...
We have grown phase-pure, buffer-free, and epitaxial alpha-Fe and gamma'-Fe4N thin films by RE. magn...
Iron nitride \ud compounds have been studied extensively during the last few decades \ud due t...
a-Axis-oriented 80-nm-thick γ′-Fe4N films were epitaxially grown on MgO(0 0 1) substrates by supplyi...
Magnetic epitaxy films of Fe4N have been grown by molecular beam epitaxial in a flow of atomic nitro...
Epitaxial ZnFe2O4 thin films were deposited on monocrystalline MgO substrate by dc-sputtering. Ferri...
The effect of film-substrate interface on the magnetic anisotropy (MA) of epitaxial Fe4N thin films ...
Single phase epitaxial pure gamma(')-Fe4N films are grown on MgO (001) by molecular beam epitaxy of ...
Thin films of iron nitride have been grown on Cu(100) single-crystals by molecular beam epitaxy of F...
Epitaxial Fe$_4$N thin films grown on LaAlO$_3$ (LAO) substrate using sputtering and molecular beam ...
The structural and magnetic properties of two series of [Gd(2, 4 nm)/Fe(t)]n multilayer films with v...
Many studies nowadays are concerned with the magnetic properties of thin magnetic layers or multilay...
The structural and magnetic properties of Fe/Zn films prepared by thermal evaporation have been stud...
We present a systematic study to address a longstanding mystery in magnetic materials and magnetism,...
Abstractγ’- Fe4N film was epitaxially grown on a SrTiO3(001) substrate by molecular beam epitaxy usi...
We have grown phase-pure, buffer-free, and epitaxial α -Fe and γ′-Fe4Nγ′-Fe4N thin films by RF magn...
We have grown phase-pure, buffer-free, and epitaxial alpha-Fe and gamma'-Fe4N thin films by RE. magn...
Iron nitride \ud compounds have been studied extensively during the last few decades \ud due t...
a-Axis-oriented 80-nm-thick γ′-Fe4N films were epitaxially grown on MgO(0 0 1) substrates by supplyi...
Magnetic epitaxy films of Fe4N have been grown by molecular beam epitaxial in a flow of atomic nitro...
Epitaxial ZnFe2O4 thin films were deposited on monocrystalline MgO substrate by dc-sputtering. Ferri...
The effect of film-substrate interface on the magnetic anisotropy (MA) of epitaxial Fe4N thin films ...
Single phase epitaxial pure gamma(')-Fe4N films are grown on MgO (001) by molecular beam epitaxy of ...
Thin films of iron nitride have been grown on Cu(100) single-crystals by molecular beam epitaxy of F...
Epitaxial Fe$_4$N thin films grown on LaAlO$_3$ (LAO) substrate using sputtering and molecular beam ...
The structural and magnetic properties of two series of [Gd(2, 4 nm)/Fe(t)]n multilayer films with v...
Many studies nowadays are concerned with the magnetic properties of thin magnetic layers or multilay...
The structural and magnetic properties of Fe/Zn films prepared by thermal evaporation have been stud...
We present a systematic study to address a longstanding mystery in magnetic materials and magnetism,...
Abstractγ’- Fe4N film was epitaxially grown on a SrTiO3(001) substrate by molecular beam epitaxy usi...