Effective temperature and Gilbert damping of a current-driven localized spin
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2008-02Metadata
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Núñez Vásquez, Álvaro
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Effective temperature and Gilbert damping of a current-driven localized spin
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Abstract
Starting from a model that consists of a semiclassical spin coupled to two leads we present a
microscopic derivation of the Langevin equation for the direction of the spin. For slowly-changing
direction it takes on the form of the stochastic Landau-Lifschitz-Gilbert equation. We give expressions
for the Gilbert damping parameter and the strength of the fluctuations, including their
bias-voltage dependence. At nonzero bias-voltage the fluctuations and damping are not related by
the fluctuation-dissipation theorem. We find, however, that in the low-frequency limit it is possible
to introduce a voltage-dependent effective temperature that characterizes the fluctuations in the
direction of the spin, and its transport-steady-state probability distribution function.
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This work was supported in
part by the National Science Foundation under grants
DMR-0606489, DMR-0210383, and PHY99-07949. ASN
is partially funded by Proyecto Fondecyt de Iniciacion
11070008 and Proyecto Bicentenario de Ciencia y Tecnolog
´ıa, ACT027.
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PHYSICAL REVIEW B, Volume: 77, Issue: 5, Article Number: 054401, 2008
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