[[abstract]]A highly ordered L10 FePt phase was directly achieved by using 2 MeV He-ion irradiation without conventional postannealing. The coercivity greater than 5700 Oe can be obtained after disordered FePt was irradiated at the beam current of several μA/cm2 with the ion doses of 2.4×1016 ions/cm2. The high beam-current-density results in direct beam heating on samples. In addition, the irradiation-induced heating process provides efficient microscopic energy transfer and creates excess point defects, which significantly enhances the diffusion and promotes the formation of the ordered phase. Consequently, the direct ordering of FePt took place by using ion-irradiation heating at temperature as low as 230 °C. Due to the feasibilities of ...
L10 - chemically ordered FePt thin films with large perpendicular magnetic anisotropy (PMA) of up to...
Chemically ordered FePt is one of the most promising materials to reach the ultimate limitations in ...
In an era of increasing data storage densities, FePt nanoparticles are ideal candidates due to their...
In this paper, we illustrate how to modify the structure and magnetic properties of L10 FePt and PtM...
We investigated magnetic properties and L10 phase formation of FePt films by rapid thermal annealing...
We investigated magnetic properties and L10 phase formation of FePt films by rapid thermal annealing...
We show that Ar+ irradiation can be used effectively to transform a chemically ordered FePt L10 homo...
Focused ion beam was utilized to locally modify magnetism and structure of L10 FePt perpendicularthi...
Focused ion beam was utilized to locally modify magnetism and structure of L10 FePt perpendicular t...
Structural and magnetic properties of FePt thin films were affected strongly by capped layers prepar...
International audiencePrevious work on ion irradiation control of FePt thin films magnetic anisotrop...
In this study, Fe52Pt48 thin films were DC magnetron sputter-deposited at room temperature onto ther...
We have shown that the structural and magnetic properties of FePt thin films were affected strongly ...
This paper investigates the role of ion-induced disorder on the morphology and magnetic properties o...
The emerging capability to produce high average power (10--300 kW) pulsed ion beams at 0.2{minus}2 M...
L10 - chemically ordered FePt thin films with large perpendicular magnetic anisotropy (PMA) of up to...
Chemically ordered FePt is one of the most promising materials to reach the ultimate limitations in ...
In an era of increasing data storage densities, FePt nanoparticles are ideal candidates due to their...
In this paper, we illustrate how to modify the structure and magnetic properties of L10 FePt and PtM...
We investigated magnetic properties and L10 phase formation of FePt films by rapid thermal annealing...
We investigated magnetic properties and L10 phase formation of FePt films by rapid thermal annealing...
We show that Ar+ irradiation can be used effectively to transform a chemically ordered FePt L10 homo...
Focused ion beam was utilized to locally modify magnetism and structure of L10 FePt perpendicularthi...
Focused ion beam was utilized to locally modify magnetism and structure of L10 FePt perpendicular t...
Structural and magnetic properties of FePt thin films were affected strongly by capped layers prepar...
International audiencePrevious work on ion irradiation control of FePt thin films magnetic anisotrop...
In this study, Fe52Pt48 thin films were DC magnetron sputter-deposited at room temperature onto ther...
We have shown that the structural and magnetic properties of FePt thin films were affected strongly ...
This paper investigates the role of ion-induced disorder on the morphology and magnetic properties o...
The emerging capability to produce high average power (10--300 kW) pulsed ion beams at 0.2{minus}2 M...
L10 - chemically ordered FePt thin films with large perpendicular magnetic anisotropy (PMA) of up to...
Chemically ordered FePt is one of the most promising materials to reach the ultimate limitations in ...
In an era of increasing data storage densities, FePt nanoparticles are ideal candidates due to their...