Thursday, February 28, 2013

1302.6688 (Hai-Zhou Lu et al.)

Extrinsic anomalous Hall conductivity of topologically nontrivial
conduction band
   [PDF]

Hai-Zhou Lu, Shun-Qing Shen
A key step towards dissipationless transport devices is the quantum anomalous Hall effect, which is characterized by an integer quantized Hall conductance in a ferromagnetic insulator with strong spin-orbit coupling. In this work, the anomalous Hall effect due to the impurity scattering, namely the extrinsic anomalous Hall effect, is studied when the Fermi energy crosses with the topologically nontrivial conduction band of a quantum anomalous Hall system. Two major extrinsic contributions, the side-jump and skew-scattering Hall conductivities, are calculated using the diagrammatic techniques in which both nonmagnetic and magnetic scattering are taken into account simultaneously. The side-jump Hall conductivity changes its sign at a critical sheet carrier density for the nontrivial phase, while it remains sign unchanged for the trivial phase. The critical sheet carrier densities estimated with realistic parameters lie in an experimentally accessible range. The results imply that a dirty quantum anomalous Hall system could be identified even when the Fermi surface lies outside the band gap.
View original: http://arxiv.org/abs/1302.6688

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