Static magnetism and thermally activated magnetic relaxation were investigated in granular FePt films (20 nm-200 nm thick) with random magnetic anisotropy through hysteresis loop, torque curve and magnetization time dependence measurements. While the magnetism of thicker film (200 nm thick) is dominated by a single switching of the ordered L10 phase, thinner film (20 nm) displays a double switching, which is indicative of the presence of the disordered cubic phase. The pronounced behavior of double switching in thinner film suggests that the film grain boundary is composed of soft cubic magnetic phase. The magnetic relaxation study reveals that magnetic viscosity S of the films is strongly dependent on the external applied field and exhibit...
The effect of annealing in an external magnetic field applied perpendicular to the plane of the film...
Nanostructured magnetic materials have unique properties that are different from bulk materials. The...
The L10 FePt phase belongs to the most promising hard ferromagnetic materials for high density recor...
The effect of thermal fluctuations of magnetization on static and dynamic properties is discussed fo...
© 2019 Elsevier B.V. Among different magnetic thin films, L1 0 FePt due to high magnetocrystalline ...
The magnetization reversal process is investigated in perpendicular spring magnets of epitaxial L10 ...
L10 - chemically ordered FePt thin films with large perpendicular magnetic anisotropy (PMA) of up to...
FePt granular films with grain size smaller than 10 nm are promising candidates for storage media us...
AbstractWe report on the development of structural and magnetic order in epitaxially grown L10 FePt ...
[[abstract]]Magnetic reversal behaviors of Au (60 nm)-FePt (x nm) thin films with various x values a...
We have observed notable changes in the magnetic response of FePt thin films that we have attributed...
© 2015, Pleiades Publishing, Ltd. Films of the L10 Fe50Pt50 phase with a thickness of 20 nm in the m...
Magnetic relaxation describes the process by which a magnetic system prepared in a non-equilibrium s...
Ultrathin FePt films (thickness between 1 nm and 5 nm) were studied for non‐volatile memories applic...
We investigated magnetic properties and L10 phase formation of FePt films by rapid thermal annealing...
The effect of annealing in an external magnetic field applied perpendicular to the plane of the film...
Nanostructured magnetic materials have unique properties that are different from bulk materials. The...
The L10 FePt phase belongs to the most promising hard ferromagnetic materials for high density recor...
The effect of thermal fluctuations of magnetization on static and dynamic properties is discussed fo...
© 2019 Elsevier B.V. Among different magnetic thin films, L1 0 FePt due to high magnetocrystalline ...
The magnetization reversal process is investigated in perpendicular spring magnets of epitaxial L10 ...
L10 - chemically ordered FePt thin films with large perpendicular magnetic anisotropy (PMA) of up to...
FePt granular films with grain size smaller than 10 nm are promising candidates for storage media us...
AbstractWe report on the development of structural and magnetic order in epitaxially grown L10 FePt ...
[[abstract]]Magnetic reversal behaviors of Au (60 nm)-FePt (x nm) thin films with various x values a...
We have observed notable changes in the magnetic response of FePt thin films that we have attributed...
© 2015, Pleiades Publishing, Ltd. Films of the L10 Fe50Pt50 phase with a thickness of 20 nm in the m...
Magnetic relaxation describes the process by which a magnetic system prepared in a non-equilibrium s...
Ultrathin FePt films (thickness between 1 nm and 5 nm) were studied for non‐volatile memories applic...
We investigated magnetic properties and L10 phase formation of FePt films by rapid thermal annealing...
The effect of annealing in an external magnetic field applied perpendicular to the plane of the film...
Nanostructured magnetic materials have unique properties that are different from bulk materials. The...
The L10 FePt phase belongs to the most promising hard ferromagnetic materials for high density recor...