Magnetic anisotropy phase-graded A1/L10-FePt films deposited on amorphous glass substrates were investigated combining ultra-high resolution electron microscopy and angular-dependent magnetic measurements. A highly textured (001) L10 FePt film was first deposited at the relative low temperature of 625 K using an MgO/Cr underlayer stack, hence a second layer was grown while continuously decreasing the deposition temperature down to a final value ranging from 515 K to 365 K depending on the layer thickness (tg). This procedure leaded to the formation of a phase-graded system consisting of hard and soft magnetic phases separated by a rough nanometer-size interphase boundary, where the magnetic anisotropy gradually changes due to the variation ...
FePt films were prepared on (100) oriented single crystal MgO substrates at high temperature rang-in...
We investigated magnetic properties and L10 phase formation of FePt films by rapid thermal annealing...
© 2015, Pleiades Publishing, Ltd. Films of the L10 Fe50Pt50 phase with a thickness of 20 nm in the m...
Magnetic anisotropy phase-graded A1/L10-FePt films deposited on amorphous glass substrates were inve...
Hard-magnetic L10 phase FePt has been demonstrated as a promising candidate for future nanomagnetic ...
Ultrathin FePt films (thickness between 1 nm and 5 nm) were studied for non‐volatile memories applic...
This paper presents a detailed study of structure, morphology, and magnetic properties in FePt thinf...
Tilting the magnetic easy axis of L10 FePt and/or introducing a magnetic buffer layer is most effect...
Nanostructured magnetic materials have unique properties that are different from bulk materials. The...
A soft/hard Fe/FePt bilayer with perpendicular magnetization was prepared on a glass substrate. Anne...
The fabrication and subsequent analysis of continuously graded anisotropy films are discussed. Durin...
© 2019, Pleiades Publishing, Ltd. Abstract: FePt thin films are made via the heat treatment of struc...
L10-ordered FePt thin films are a leading candidate for next-generation magnetic recording, such as ...
We show that Ar+ irradiation can be used effectively to transform a chemically ordered FePt L10 homo...
The FePt and FePtCu thin films with graded anisotropy and titled anisotropy are utilized to solve b...
FePt films were prepared on (100) oriented single crystal MgO substrates at high temperature rang-in...
We investigated magnetic properties and L10 phase formation of FePt films by rapid thermal annealing...
© 2015, Pleiades Publishing, Ltd. Films of the L10 Fe50Pt50 phase with a thickness of 20 nm in the m...
Magnetic anisotropy phase-graded A1/L10-FePt films deposited on amorphous glass substrates were inve...
Hard-magnetic L10 phase FePt has been demonstrated as a promising candidate for future nanomagnetic ...
Ultrathin FePt films (thickness between 1 nm and 5 nm) were studied for non‐volatile memories applic...
This paper presents a detailed study of structure, morphology, and magnetic properties in FePt thinf...
Tilting the magnetic easy axis of L10 FePt and/or introducing a magnetic buffer layer is most effect...
Nanostructured magnetic materials have unique properties that are different from bulk materials. The...
A soft/hard Fe/FePt bilayer with perpendicular magnetization was prepared on a glass substrate. Anne...
The fabrication and subsequent analysis of continuously graded anisotropy films are discussed. Durin...
© 2019, Pleiades Publishing, Ltd. Abstract: FePt thin films are made via the heat treatment of struc...
L10-ordered FePt thin films are a leading candidate for next-generation magnetic recording, such as ...
We show that Ar+ irradiation can be used effectively to transform a chemically ordered FePt L10 homo...
The FePt and FePtCu thin films with graded anisotropy and titled anisotropy are utilized to solve b...
FePt films were prepared on (100) oriented single crystal MgO substrates at high temperature rang-in...
We investigated magnetic properties and L10 phase formation of FePt films by rapid thermal annealing...
© 2015, Pleiades Publishing, Ltd. Films of the L10 Fe50Pt50 phase with a thickness of 20 nm in the m...