Highly ordered L10 FePt-oxide thin films with small grains were prepared by using a RuAl layer as a grain size defining seed layer along with a TiN barrier layer. Different HAMR (Heat Assisted Magnetic Recording) favorable underlayers were studied to encourage perpendicular texture and preferred microstructure. It was found that the epitaxial and small grain growth from the RuAl/TiN underlayer results in small and uniform grains in the FePt layer with perpendicular texture. By introducing the grain size defining underlayers, the FePt grain size can be reduced from 30 to 6 nm with the same volume fraction (9%) of SiO2 in the film, excellent perpendicular texture, and very high order parameter at 520 °C.</p
In this work, well-ordered epitaxial FePt thin ¿lms have been grown by RF sputtering on two differen...
L10 FePt- and Fe-related alloys such as FePtRh, FeRh and FeRhPd have been studied for the high magne...
This paper presents a detailed study of structure, morphology, and magnetic properties in FePt thinf...
The impact of RuAl underlayers and TiN intermediate layers on the microstructure, L1 ordering, and c...
An experimental approach for obtaining perpendicular FePt-SiOx thin films with a large height to dia...
213 p.Chemically ordered Ll0 (CuAu-I type structure) FePt films with an fct (face centered tetragona...
An approach to enhance the height-to-diameter ratio of FePt grains in heat-assisted magnetic recordi...
Achieving magnetic recording densities in excess of 1Tbit/in2 requires not only perpendicular media ...
L10-ordered FePt thin films are a leading candidate for next-generation magnetic recording, such as ...
The effects of the fabrication methods and different capped oxide (SiO(2) and TiO(2)) layers on the ...
Ultra-thin L10-FePt films of 2 nm average thickness are prepared on (001) oriented MgO and VN underl...
Aiming at development of ultra-high density magnetic recording media, nanostructured Fe–Pt perpendic...
Nanostructured magnetic materials have unique properties that are different from bulk materials. The...
L10 - chemically ordered FePt thin films with large perpendicular magnetic anisotropy (PMA) of up to...
Tilting the magnetic easy axis of L10 FePt and/or introducing a magnetic buffer layer is most effect...
In this work, well-ordered epitaxial FePt thin ¿lms have been grown by RF sputtering on two differen...
L10 FePt- and Fe-related alloys such as FePtRh, FeRh and FeRhPd have been studied for the high magne...
This paper presents a detailed study of structure, morphology, and magnetic properties in FePt thinf...
The impact of RuAl underlayers and TiN intermediate layers on the microstructure, L1 ordering, and c...
An experimental approach for obtaining perpendicular FePt-SiOx thin films with a large height to dia...
213 p.Chemically ordered Ll0 (CuAu-I type structure) FePt films with an fct (face centered tetragona...
An approach to enhance the height-to-diameter ratio of FePt grains in heat-assisted magnetic recordi...
Achieving magnetic recording densities in excess of 1Tbit/in2 requires not only perpendicular media ...
L10-ordered FePt thin films are a leading candidate for next-generation magnetic recording, such as ...
The effects of the fabrication methods and different capped oxide (SiO(2) and TiO(2)) layers on the ...
Ultra-thin L10-FePt films of 2 nm average thickness are prepared on (001) oriented MgO and VN underl...
Aiming at development of ultra-high density magnetic recording media, nanostructured Fe–Pt perpendic...
Nanostructured magnetic materials have unique properties that are different from bulk materials. The...
L10 - chemically ordered FePt thin films with large perpendicular magnetic anisotropy (PMA) of up to...
Tilting the magnetic easy axis of L10 FePt and/or introducing a magnetic buffer layer is most effect...
In this work, well-ordered epitaxial FePt thin ¿lms have been grown by RF sputtering on two differen...
L10 FePt- and Fe-related alloys such as FePtRh, FeRh and FeRhPd have been studied for the high magne...
This paper presents a detailed study of structure, morphology, and magnetic properties in FePt thinf...