Direct Observation of Spin-Torque Driven Magnetization Reversal Through Nonuniform Modes

We present time-resolved x-ray images with 30 nm spatial and 70 ps temporal resolution, which reveal details of the spatially resolved magnetization evolution in nanoscale samples of various dimensions during reversible spin-torque switching processes. Our data in conjunction with micromagnetic simu...

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Veröffentlicht in:Physical review letters 2009-05, Vol.100 (24)
Hauptverfasser: Strachan, J.P., Chembrolu, V., Acremann, Y., Yu, X.W., Tulapurkar, A.A., Tyliszczak, T., Katine, J.A., Carey, M.J., Scheinfein, M.R., Siegmann, H.C., Stohr, J.
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Sprache:eng
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Zusammenfassung:We present time-resolved x-ray images with 30 nm spatial and 70 ps temporal resolution, which reveal details of the spatially resolved magnetization evolution in nanoscale samples of various dimensions during reversible spin-torque switching processes. Our data in conjunction with micromagnetic simulations suggest a simple unified picture of magnetic switching based on the motion of a magnetic vortex. With decreasing size of the magnetic element the path of the vortex core moves from inside to outside of the nanoelement, and the switching process evolves from a curled nonuniform to an increasingly uniform mode.
ISSN:0031-9007
1079-7114