We report on Ni-doped nonepitaxial L10 FePt thin films with strong (001) texture. The influences of Ni doping on L10 ordering, orientation, and the magnetic properties of the FePt films have been investigated. In-plane and out-of-plane x-ray diffractions (XRD) were used to analyze the texture of FeNiPt films. For [Fe(0.38 nm)/Ni(0.04 nm)/Pt(0.4)] 13 sample, the out-of-plane XRD data showed only (00l) peaks and in-plane data showed (hk0) peaks after annealing, indicating high (001) texture of the FeNiPt films. In comparison with FePt, the (00l) peak positions shifted to higher angle, indicating partial Ni substitution in the L10 lattice. The coercivity, measured at room temperature, decreased as a function of Ni doping. For the film with a N...
Highly textured (001) FePt:C nanocomposite thin films, deposited directly on thermally oxidized Si w...
FePt films were prepared on (100) oriented single crystal MgO substrates at high temperature rang-in...
A noneptaxially grown double-layered thin-film medium of nanocompsite FePt:C with a FeCoNi soft unde...
We report on Ni-doped nonepitaxial L10 FePt thin films with strong (001) texture. The influences of ...
We report on nonepitaxially grown L10 Cu-alloyed FePt thin films with strong (001) texture. The FePt...
We report on nonepitaxially grown L10 Cu-alloyed FePt thin films with strong (001) texture. The FePt...
A method of preparing nonepitaxially grown, highly textured L10 FePt thin films is described. A near...
A method of preparing nonepitaxially grown, highly textured L10 FePt thin films is described. A near...
Nonepitaxial FePt: X films (X =Cu,Au,CuAu) with tunable magnetic properties are fabricated and inves...
Nonepitaxial FePt: X films (X =Cu,Au,CuAu) with tunable magnetic properties are fabricated and inves...
Highly textured (001) FePt:C nanocomposite thin films, deposited directly on thermally oxidized Si w...
We report results on highly oriented, face-centered tetragonal ordered CoPt and FePt thin films grow...
We report results on highly oriented, face-centered tetragonal ordered CoPt and FePt thin films grow...
Highly textured (001) FePt:C nanocomposite thin films, deposited directly on thermally oxidized Si w...
Highly textured (001) FePt:C nanocomposite thin films, deposited directly on thermally oxidized Si w...
Highly textured (001) FePt:C nanocomposite thin films, deposited directly on thermally oxidized Si w...
FePt films were prepared on (100) oriented single crystal MgO substrates at high temperature rang-in...
A noneptaxially grown double-layered thin-film medium of nanocompsite FePt:C with a FeCoNi soft unde...
We report on Ni-doped nonepitaxial L10 FePt thin films with strong (001) texture. The influences of ...
We report on nonepitaxially grown L10 Cu-alloyed FePt thin films with strong (001) texture. The FePt...
We report on nonepitaxially grown L10 Cu-alloyed FePt thin films with strong (001) texture. The FePt...
A method of preparing nonepitaxially grown, highly textured L10 FePt thin films is described. A near...
A method of preparing nonepitaxially grown, highly textured L10 FePt thin films is described. A near...
Nonepitaxial FePt: X films (X =Cu,Au,CuAu) with tunable magnetic properties are fabricated and inves...
Nonepitaxial FePt: X films (X =Cu,Au,CuAu) with tunable magnetic properties are fabricated and inves...
Highly textured (001) FePt:C nanocomposite thin films, deposited directly on thermally oxidized Si w...
We report results on highly oriented, face-centered tetragonal ordered CoPt and FePt thin films grow...
We report results on highly oriented, face-centered tetragonal ordered CoPt and FePt thin films grow...
Highly textured (001) FePt:C nanocomposite thin films, deposited directly on thermally oxidized Si w...
Highly textured (001) FePt:C nanocomposite thin films, deposited directly on thermally oxidized Si w...
Highly textured (001) FePt:C nanocomposite thin films, deposited directly on thermally oxidized Si w...
FePt films were prepared on (100) oriented single crystal MgO substrates at high temperature rang-in...
A noneptaxially grown double-layered thin-film medium of nanocompsite FePt:C with a FeCoNi soft unde...