arXiv · 1010.1626
A unified first-principles study of Gilbert damping, spin-flip diffusion and resistivity in transition metal alloys
Abstract
Using a formulation of first-principles scattering theory that includes disorder and spin-orbit coupling on an equal footing, we calculate the resistivity $ρ$, spin flip diffusion length $l_{sf}$ and the Gilbert damping parameter $α$ for Ni$_{1-x}$Fe$_x$ substitutional alloys as a function of $x$. For the technologically important Ni$_{80}$Fe$_{20}$ alloy, permalloy, we calculate values of $ρ= 3.5 \pm 0.15$ $μ$Ohm-cm, $l_{sf}=5.5 \pm 0.3$ nm, and $α= 0.0046 \pm 0.0001$ compared to experimental low-temperature values in the range $4.2-4.8$ $μ$Ohm-cm for $ρ$, $5.0-6.0$ nm for $l_{sf}$, and $0.004-0.013$ for $α$ indicating that the theoretical formalism captures the most important contributions to these parameters.
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Anton A. Starikov, Paul J. Kelly, Arne Brataas, Yaroslav Tserkovnyak, Gerrit E. W. Bauer. 2011-05-19. A unified first-principles study of Gilbert damping, spin-flip diffusion and resistivity in transition metal alloys. https://doi.org/10.1103/physrevlett.105.236601
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