[[abstract]]FePt films being with high coercivity, large energy product and corrosion resistance, are highly potential in applications such as MEMs, ultra-high density magnetic recording, and others. Much attention has been paid to the preparation of high quality films at substrate/annealing temperatures as low as possible to accommodate processing adopted in the manufacture of MEMs or sensors. In this study FexPt1-x thin films were deposited by DC magnetron sputtering onto Si(100) and CrMo-seeded glass substrates at a substrate temperature (Ts) 30 to 600 degreesC with or without further post-annealing. Optimum magnetic properties of our studied films were obtained at the Fe53Pt47 composition as-deposited at Ts 300 degreesC. The in-plane co...
Nanocomposite FePt:SiO2 films have been fabricated by annealing the as-deposited FePt/SiO2 multilaye...
The L10 FePt phase belongs to the most promising hard ferromagnetic materials for high density recor...
Two series of epitaxial CoPt and FePt films, with nominal thicknesses of 42 or 50 nm, were prepared ...
FePt films have been prepared by sputtering Fe/Pt multilayers onto glass or silicon substrates. The ...
AbstractWe report a systematic investigation of temperature dependent magnetic properties of FePt si...
FePt films were prepared on (100) oriented single crystal MgO substrates at high temperature rang-in...
The structural transfqmation from fcc to fct and relevant magnetic properties of initially multilaye...
Chemically ordered FePt is one of the most promising materials to reach the ultimate limitations in ...
We prepared L10 ordered Fe50Pt50 thick-films on Cu substrates using the electroplating method and ev...
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...
Two-phase nanostructures of hard L10-ordered FePt and soft iron-rich fcc Fe-Pt are investigated expe...
The L1(0) FePt phase material has potential applications for magnetic recording and permanent magnet...
[Fe/Pt/Cu]18 multilayer films with different Cu thicknesses were prepared on thermally oxidized Si (...
科研費報告書収録論文(課題番号:11305027・基盤研究(A)(2)・H11~H12/研究代表者:中村, 慶久/柔軟なスピンクラスター配列からなる超高密度磁気記録メディアの研究
Nanocomposite FePt:SiO2 films have been fabricated by annealing the as-deposited FePt/SiO2 multilaye...
The L10 FePt phase belongs to the most promising hard ferromagnetic materials for high density recor...
Two series of epitaxial CoPt and FePt films, with nominal thicknesses of 42 or 50 nm, were prepared ...
FePt films have been prepared by sputtering Fe/Pt multilayers onto glass or silicon substrates. The ...
AbstractWe report a systematic investigation of temperature dependent magnetic properties of FePt si...
FePt films were prepared on (100) oriented single crystal MgO substrates at high temperature rang-in...
The structural transfqmation from fcc to fct and relevant magnetic properties of initially multilaye...
Chemically ordered FePt is one of the most promising materials to reach the ultimate limitations in ...
We prepared L10 ordered Fe50Pt50 thick-films on Cu substrates using the electroplating method and ev...
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...
Two-phase nanostructures of hard L10-ordered FePt and soft iron-rich fcc Fe-Pt are investigated expe...
The L1(0) FePt phase material has potential applications for magnetic recording and permanent magnet...
[Fe/Pt/Cu]18 multilayer films with different Cu thicknesses were prepared on thermally oxidized Si (...
科研費報告書収録論文(課題番号:11305027・基盤研究(A)(2)・H11~H12/研究代表者:中村, 慶久/柔軟なスピンクラスター配列からなる超高密度磁気記録メディアの研究
Nanocomposite FePt:SiO2 films have been fabricated by annealing the as-deposited FePt/SiO2 multilaye...
The L10 FePt phase belongs to the most promising hard ferromagnetic materials for high density recor...
Two series of epitaxial CoPt and FePt films, with nominal thicknesses of 42 or 50 nm, were prepared ...