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- W2065961306 startingPage "8484" @default.
- W2065961306 abstract "When an electrical current flows parallel to a stepped metal surface, the steps contribute to the surface-induced resistivity due to the diffuse scattering of the carriers that occurs at the step edges. In this paper, multiple-scattering theory is used to compute the surface resistivity induced by steps on the vicinal (100) surfaces of Al. The carrier scattering by the surface barrier is described by a model corrugated potential fit to the results of a first-principles calculation of the surface-induced resistivity of the unstepped surface. The Bloch states of the semi-infinite bulk are described by a layer--Korringa-Kohn-Rostoker calculation. The surface resistivity is found to be a function of the step density, ${ensuremath{eta}}_{s},$ and becomes a linear function of ${ensuremath{eta}}_{s}$ for low step-edge densities. Deviation for linearity at higher step densities results from the multiple scattering of carriers between step edges." @default.
- W2065961306 created "2016-06-24" @default.
- W2065961306 creator A5087760725 @default.
- W2065961306 date "2000-03-15" @default.
- W2065961306 modified "2023-09-23" @default.
- W2065961306 title "Multiple-scattering theory of the surface resistivity of stepped Al surfaces" @default.
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- W2065961306 doi "https://doi.org/10.1103/physrevb.61.8484" @default.
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