Nonlinear domain-wall velocity enhancement by spin-polarized electric current

The interaction between a dc spin-polarized electric current and a magnetic domain wall in a Permalloy nanowire was studied by high-bandwidth scanning Kerr polarimetry. The full functional dependence of wall velocity on electric current and magnetic field is presented. With the pinning potential nul...

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Veröffentlicht in:Physical review letters 2006-08, Vol.97 (5), p.057203-057203, Article 057203
Hauptverfasser: Beach, G S D, Knutson, C, Nistor, C, Tsoi, M, Erskine, J L
Format: Artikel
Sprache:eng
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Zusammenfassung:The interaction between a dc spin-polarized electric current and a magnetic domain wall in a Permalloy nanowire was studied by high-bandwidth scanning Kerr polarimetry. The full functional dependence of wall velocity on electric current and magnetic field is presented. With the pinning potential nulled by a field, current-induced velocity enhancements exceeded 35 m/s at a current density of approximately 6 x 10(11) A/m(2). This large enhancement, more than 10 times that found in pinning-dominated experiments, results in part from an interaction that is nonlinear in current and independent of current direction.
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.97.057203