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- W2607200909 abstract "The techniques of propagating spin-wave spectroscopy and current-induced spin-wave Doppler shift are applied to a 20-nm-thick Fe/MgO(001) film. The magnetic parameters extracted from the position of the spin-wave resonance peaks are very close to those tabulated for bulk iron. From the zero-current propagating wave forms, a group velocity of 4 km/s and an attenuation length of about 6 $ensuremath{mu}mathrm{m}$ are extracted for 1.6-$ensuremath{mu}mathrm{m}$-wavelength spin wave at 18 GHz. From the measured current-induced spin-wave Doppler shift, we extract a surprisingly high degree of spin polarization of the current of $83%$, which constitutes the main finding of this work. This set of results makes single-crystalline iron a promising candidate for building devices utilizing high-frequency spin waves and spin-polarized currents." @default.
- W2607200909 created "2017-04-28" @default.
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- W2607200909 date "2017-11-16" @default.
- W2607200909 modified "2023-09-25" @default.
- W2607200909 title "Spin-wave propagation and spin-polarized electron transport in single-crystal iron films" @default.
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- W2607200909 doi "https://doi.org/10.1103/physrevb.96.174420" @default.
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