4.8 Article

Spin-Torque Ferromagnetic Resonance Induced by the Spin Hall Effect

期刊

PHYSICAL REVIEW LETTERS
卷 106, 期 3, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.106.036601

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资金

  1. Army Research Office
  2. NSF-NSEC through the Cornell Center for Nanoscale Systems
  3. NSF through the National Nanofabrication Infrastructure Network
  4. NSF-MRSEC

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We demonstrate that the spin Hall effect in a thin film with strong spin-orbit scattering can excite magnetic precession in an adjacent ferromagnetic film. The flow of alternating current through a Pt/NiFe bilayer generates an oscillating transverse spin current in the Pt, and the resultant transfer of spin angular momentum to the NiFe induces ferromagnetic resonance dynamics. The Oersted field from the current also generates a ferromagnetic resonance signal but with a different symmetry. The ratio of these two signals allows a quantitative determination of the spin current and the spin Hall angle.

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