arXiv · cond-mat/0302562
Anomalous Hall Effect in Ferromagnetic Semiconductors in the Hopping Transport Regime
Abstract
We present a theory of the Anomalous Hall Effect (AHE) in ferromagnetic (Ga,Mn)As in the regime when conduction is due to phonon-assisted hopping of holes between localized states in the impurity band. We show that the microscopic origin of the anomalous Hall conductivity in this system can be attributed to a phase that a hole gains when hopping around closed-loop paths in the presence of spin-orbit interactions and background magnetization of the localized Mn moments. Mapping the problem to a random resistor network, we derive an analytic expression for the macroscopic anomalous Hall conductivity $σ_{xy}^{AH}$. We show that $σ_{xy}^{AH}$ is proportional to the first derivative of the density of states $\varrho(ε)$ and thus can be expected to change sign as a function of impurity band filling. We also show that $σ_{xy}^{AH}$ depends on temperature as the longitudinal conductivity $σ_{xx}$ within logarithmic accuracy.
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A. A. Burkov, Leon Balents. 2003-07-30. Anomalous Hall Effect in Ferromagnetic Semiconductors in the Hopping Transport Regime. https://doi.org/10.1103/physrevlett.91.057202
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