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Current-induced spin torques in III-V ferromagnetic semiconductors

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arxiv 0802.3717 v2 pith:3ANHHZCH submitted 2008-02-25 cond-mat.other

Current-induced spin torques in III-V ferromagnetic semiconductors

classification cond-mat.other
keywords spinferromagneticfieldtorquescurrent-inducedelectriciii-vinteraction
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We formulate a theory of current-induced spin torques in inhomogeneous III-V ferromagnetic semiconductors. The carrier spin-3/2 and large spin-orbit interaction, leading to spin non-conservation, introduce significant conceptual differences from spin torques in ferromagnetic metals. We determine the spin density in an electric field in the weak momentum scattering regime, demonstrating that the torque on the magnetization is intimately related to spin precession under the action of both the spin-orbit interaction and the exchange field characteristic of ferromagnetism. The spin polarization excited by the electric field is smaller than in ferromagnetic metals and, due to lack of angular momentum conservation, cannot be expressed in a simple closed vectorial form. Remarkably, scalar and spin-dependent scattering do not affect the result. We use our results to estimate the velocity of current-driven domain walls.

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