In order to optimize the nanogranular structure of FePt-C for heat-assisted magnetic recording media, we investigated the influence of MgO underlayers on the growth of FePt grains in the FePt-C layer. The FePt-C layer was deposited by using the alternating sputtering method, by which FePt and FePt-C layers were alternately deposited. To understand the growth mechanism of the FePt-C layer on the MgO underlayers deposited under various conditions, detailed plan-view and cross sectional transmission electron microscopy observations were made for different film thicknesses. We found that columnar FePt grains grow only when the deposition conditions of the MgO underlayer are optimal. Direct TEM observation of the growth process of the FePt-C lay...
FePt-Ag nanocomposite films with large perpendicular magnetic anisotropy have been fabricated by alt...
The in-plane magnetic component in FePt-40 vol% (Ag, C) granular film was caused by lower ordering d...
FePt granular films with grain size smaller than 10 nm are promising candidates for storage media us...
[[abstract]]A MgO (18 nm) single layer was inserted into Fe/Pt multilayers to introduce controllable...
The magnetic properties and microstructure of FePt films grown on MgTiON intermediate layer were stu...
The MgO nanolayer effect on the microstructure and magnetic characterizations added into Fe/Pt stack...
The FePt film above 10 nm critical lattice relaxation thickness was prepared and the ultrathin MgTiT...
cited By 1International audienceThe FePt:MgO multi-layer nanocomposite thin films are deposited on M...
[[abstract]]FePt/SiO2 nanogranular thin films have been prepared by molecular-beam epitaxy system on...
Films of FePt nanoparticles (NP) embedded in MgO were obtained by controlled co-deposition of FePt N...
Achieving magnetic recording densities in excess of 1Tbit/in2 requires not only perpendicular media ...
The microstructure and magnetic properties of FePt(BN, Ag, C) granular films grown on the MgTiON int...
Achieving magnetic recording densities in excess of 1Tbit/in2 requires not only perpendicular media ...
We perform first-principles calculations to predict the morphology of L10 ordered FePt nanoparticles...
<p>An approach to enhance the height-to-diameter ratio of FePt grains in heat-assisted magnetic reco...
FePt-Ag nanocomposite films with large perpendicular magnetic anisotropy have been fabricated by alt...
The in-plane magnetic component in FePt-40 vol% (Ag, C) granular film was caused by lower ordering d...
FePt granular films with grain size smaller than 10 nm are promising candidates for storage media us...
[[abstract]]A MgO (18 nm) single layer was inserted into Fe/Pt multilayers to introduce controllable...
The magnetic properties and microstructure of FePt films grown on MgTiON intermediate layer were stu...
The MgO nanolayer effect on the microstructure and magnetic characterizations added into Fe/Pt stack...
The FePt film above 10 nm critical lattice relaxation thickness was prepared and the ultrathin MgTiT...
cited By 1International audienceThe FePt:MgO multi-layer nanocomposite thin films are deposited on M...
[[abstract]]FePt/SiO2 nanogranular thin films have been prepared by molecular-beam epitaxy system on...
Films of FePt nanoparticles (NP) embedded in MgO were obtained by controlled co-deposition of FePt N...
Achieving magnetic recording densities in excess of 1Tbit/in2 requires not only perpendicular media ...
The microstructure and magnetic properties of FePt(BN, Ag, C) granular films grown on the MgTiON int...
Achieving magnetic recording densities in excess of 1Tbit/in2 requires not only perpendicular media ...
We perform first-principles calculations to predict the morphology of L10 ordered FePt nanoparticles...
<p>An approach to enhance the height-to-diameter ratio of FePt grains in heat-assisted magnetic reco...
FePt-Ag nanocomposite films with large perpendicular magnetic anisotropy have been fabricated by alt...
The in-plane magnetic component in FePt-40 vol% (Ag, C) granular film was caused by lower ordering d...
FePt granular films with grain size smaller than 10 nm are promising candidates for storage media us...