Relationship between nonadiabaticity and damping in permalloy studied by current induced spin structure transformations

By direct imaging we determine spin structure changes in Permalloy wires and disks due to spin transfer torque as well as the critical current densities for different domain wall types. Periodic domain wall transformations from transverse to vortex walls and vice versa are observed, and the transfor...

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Veröffentlicht in:Physical review letters 2008-02, Vol.100 (6), p.066603-066603, Article 066603
Hauptverfasser: Heyne, L, Kläui, M, Backes, D, Moore, T A, Krzyk, S, Rüdiger, U, Heyderman, L J, Rodríguez, A Fraile, Nolting, F, Mentes, T O, Niño, M A, Locatelli, A, Kirsch, K, Mattheis, R
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Sprache:eng
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Zusammenfassung:By direct imaging we determine spin structure changes in Permalloy wires and disks due to spin transfer torque as well as the critical current densities for different domain wall types. Periodic domain wall transformations from transverse to vortex walls and vice versa are observed, and the transformation mechanism occurs by vortex core displacement perpendicular to the wire. The results imply that the nonadiabaticity parameter beta does not equal the damping alpha, in agreement with recent theoretical predictions. The vortex core motion perpendicular to the current is further studied in disks revealing that the displacement in opposite directions can be attributed to different polarities of the vortex core.
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.100.066603