FePt granular films with grain size smaller than 10 nm are promising candidates for storage media used in the next generation heat-assisted magnetic recording technology. However, FePt films show degraded magnetic properties when the grain size is reduced to this scale, which cannot be explained solely by the finite size theory. In this study, we explored the structural cause of property degradation by employing advanced electron microscopy and atomistic modeling. Structural features unique to the nanostructured FePt granular films at significantly reduced grain sizes of 2∼8 nm were studied by high-resolution scanning transmission electron microscopy with geometric aberrations corrected up to the third order. Two critical structural paramet...
An understanding of the damping mechanism in finite-size systems and its dependence on temperature i...
Achieving magnetic recording densities in excess of 1Tbit/in2 requires not only perpendicular media ...
[[abstract]]FePt/SiO2 nanogranular thin films have been prepared by molecular-beam epitaxy system on...
FePt granular films with grain size smaller than 10 nm are promising candidates for storage media us...
Nanostructured magnetic materials have unique properties that are different from bulk materials. The...
Nanocomposite FePt:SiO2 films have been fabricated by annealing the as-deposited FePt/SiO2 multilaye...
The effect of thermal fluctuations of magnetization on static and dynamic properties is discussed fo...
The microstructure and magnetic properties of FePt(BN, Ag, C) granular films grown on the MgTiON int...
[[abstract]]A MgO (18 nm) single layer was inserted into Fe/Pt multilayers to introduce controllable...
The effects of the fabrication methods and different capped oxide (SiO(2) and TiO(2)) layers on the ...
We report effects of rapid thermal annealing on nanostructure, texture, and magnetic properties of g...
The face-centered-tetragonal granular L10FePt nanoparticles with large in-plane coercivity (Hc ) of ...
Abstract. Ion-beam sputtering has been used to achieve the growth of FePt thin films and C/FePt gran...
The magnetic properties of a 48 nm thick Fe50Pt50 film and submicron size elements made of the film ...
FePt-Ag nanocomposite films with large perpendicular magnetic anisotropy have been fabricated by alt...
An understanding of the damping mechanism in finite-size systems and its dependence on temperature i...
Achieving magnetic recording densities in excess of 1Tbit/in2 requires not only perpendicular media ...
[[abstract]]FePt/SiO2 nanogranular thin films have been prepared by molecular-beam epitaxy system on...
FePt granular films with grain size smaller than 10 nm are promising candidates for storage media us...
Nanostructured magnetic materials have unique properties that are different from bulk materials. The...
Nanocomposite FePt:SiO2 films have been fabricated by annealing the as-deposited FePt/SiO2 multilaye...
The effect of thermal fluctuations of magnetization on static and dynamic properties is discussed fo...
The microstructure and magnetic properties of FePt(BN, Ag, C) granular films grown on the MgTiON int...
[[abstract]]A MgO (18 nm) single layer was inserted into Fe/Pt multilayers to introduce controllable...
The effects of the fabrication methods and different capped oxide (SiO(2) and TiO(2)) layers on the ...
We report effects of rapid thermal annealing on nanostructure, texture, and magnetic properties of g...
The face-centered-tetragonal granular L10FePt nanoparticles with large in-plane coercivity (Hc ) of ...
Abstract. Ion-beam sputtering has been used to achieve the growth of FePt thin films and C/FePt gran...
The magnetic properties of a 48 nm thick Fe50Pt50 film and submicron size elements made of the film ...
FePt-Ag nanocomposite films with large perpendicular magnetic anisotropy have been fabricated by alt...
An understanding of the damping mechanism in finite-size systems and its dependence on temperature i...
Achieving magnetic recording densities in excess of 1Tbit/in2 requires not only perpendicular media ...
[[abstract]]FePt/SiO2 nanogranular thin films have been prepared by molecular-beam epitaxy system on...