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Observation of the Spin-Seebeck Effect in a Ferromagnetic Semiconductor

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arxiv 1007.1364 v1 pith:XRXMZQIM submitted 2010-07-08 cond-mat.mtrl-sci

Observation of the Spin-Seebeck Effect in a Ferromagnetic Semiconductor

classification cond-mat.mtrl-sci
keywords effectspinspin-seebeckacrossdistributionferromagneticgamnassemiconductor
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The spin-Seebeck effect was recently discovered in a metallic ferromagnet and consists of a thermally generated spin distribution that is electrically measured utilizing the inverse spin Hall effect. Here this effect is reproduced experimentally in a ferromagnetic semiconductor, GaMnAs, which allows for flexible design of the magnetization directions, a larger spin polarization, and measurements across the magnetic phase transition. The spin-Seebeck effect in GaMnAs is observed even in the absence of longitudinal charge transport. The spatial distribution of spin-currents is maintained across electrical breaks highlighting the local nature of the effect, which is therefore ascribed to a thermally induced spin redistribution.

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