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- W2896020504 abstract "A new route for reducing the switching field $(H_{mathrm{s}mathrm{w}})$ while maintaining the thermal stability of magnetization is indispensable for further increase in areal density of magnetic storage media. From the viewpoint of thermal stability of magnetization in nanoscale, $L1_{0}-$ $ FePt is one of the candidate materials for the recording media because of its high uniaxial magnetic anisotropy $(K_{mathrm{u}})$ . Thus, it is required that $H_{mathrm{s}mathrm{w}}$ of $L1_{0}-$ FePt is effectively reduced only when data are written into magnetic bits. We previously reported that spin wave excitation remarkably reduced $H_{mathrm{s}mathrm{w}}$ for the exchange-coupled $L1_{0}-$ FePt / Ni 81 Fe 19 (Permalloy; Py) bilayer with in-plane magnetization [1]– [3]. From the practical point of view, however, such $H_{mathrm{s}mathrm{w}}$ reduction should be done for a bilayer with an out-of-plane configuration of magnetic moments." @default.
- W2896020504 created "2018-10-26" @default.
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- W2896020504 date "2016-08-01" @default.
- W2896020504 modified "2023-09-26" @default.
- W2896020504 title "Magnetization Switching in Exchange-Coupled Systems" @default.
- W2896020504 doi "https://doi.org/10.1109/icaums.2016.8480012" @default.
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