Spin Elastodynamic Motive Force

The spin-motive force (SMF) in a simple ferromagnetic monolayer caused by a surface acoustic wave is studied theoretically via spin-vorticity coupling (SVC). The SMF has two mechanisms. The first is the SVC-driven SMF, which produces the first harmonic electromotive force, and the second is the inte...

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Veröffentlicht in:Physical review letters 2022-02, Vol.128 (7), p.077201-077201, Article 077201
Hauptverfasser: Funato, Takumi, Matsuo, Mamoru
Format: Artikel
Sprache:eng
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Zusammenfassung:The spin-motive force (SMF) in a simple ferromagnetic monolayer caused by a surface acoustic wave is studied theoretically via spin-vorticity coupling (SVC). The SMF has two mechanisms. The first is the SVC-driven SMF, which produces the first harmonic electromotive force, and the second is the interplay between the SVC and the magnetoelastic coupling, which produces the dc and second harmonic electromotive forces. We show that these electric voltages induced by a Rayleigh-type surface acoustic wave can be detected in polycrystalline nickel. No sophisticated device structures, noncollinear magnetic structures, or strong spin-orbit materials are used in our approach. Consequently, it is intended to broaden the spectrum of SMF applications considerably.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.128.077201