Absence of skew scattering in two-dimensional systems: testing the origins of the anomalous Hall effect

We study the anomalous Hall conductivity in spin-polarized, asymmetrically confined two-dimensional electron and hole systems, taking into account the intrinsic, side-jump, and skew-scattering contributions to the transport. We find that the skew scattering, principally responsible for the extrinsic...

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Veröffentlicht in:Physical review letters 2007-08, Vol.99 (6), p.066604-066604, Article 066604
Hauptverfasser: Borunda, Mario, Nunner, Tamara S, Lück, Thomas, Sinitsyn, N A, Timm, Carsten, Wunderlich, J, Jungwirth, T, MacDonald, A H, Sinova, Jairo
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Sprache:eng
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Zusammenfassung:We study the anomalous Hall conductivity in spin-polarized, asymmetrically confined two-dimensional electron and hole systems, taking into account the intrinsic, side-jump, and skew-scattering contributions to the transport. We find that the skew scattering, principally responsible for the extrinsic contribution to the anomalous Hall effect, vanishes for the two-dimensional electron system if both chiral Rashba subbands are partially occupied, and vanishes always for the two-dimensional hole gas studied here, regardless of the band filling. Our prediction can be tested with the proposed coplanar two-dimensional electron-hole gas device and can be used as a benchmark to understand the crossover from the intrinsic to the extrinsic anomalous Hall effect.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.99.066604