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- W2017956360 abstract "We explored the island-like Ge 3 Pt 2 underlayer effect and post-annealing temperature on FePt magnetic properties and microstructure. The Ge 3 Pt 2 intermetallic compound was formed at high annealing temperature (≥600 °C) and the island-like structure was occurred to relax the growth stress between Ge 3 Pt 2 and quartz. After island-like underlayer, the L1 0 FePt film was deposited on Ge 3 Pt 2 islands or quartz substrate simultaneously. After deposition, the GePt/FePt bilayer post-annealing at 400 °C for 1 h, the higher degree of ordering ( S = 0.86) and coercivity ( H c = 8.8 kOe) than single layer FePt film ( H c = 6.4 kOe) were measured. This suggests that there is a surface morphology dependence on the coercivity of FePt film. During post-annealing, the island-like Ge 3 Pt 2 induced tensile stress on FePt, which enhanced the formation of ordered FePt. In comparison, when the post-annealing up to 800 °C for 1 h, the FePt ordering was suppressed ( S = 0.75) and the coercivity was down to 3.6 kOe. It is due to the interface diffusion between GePt and FePt at 800 °C. The irregular isolated GePt/FePt islands were formed on quartz substrate. As a result, the Ge 3 Pt 2 compound was good for underlayer of FePt film with low post-annealing temperature (400 °C)." @default.
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- W2017956360 date "2006-12-01" @default.
- W2017956360 modified "2023-09-24" @default.
- W2017956360 title "Magnetic properties and microstructure of FePt/GePt bilayer" @default.
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- W2017956360 doi "https://doi.org/10.1016/j.jallcom.2006.06.102" @default.
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