Electrical Deviations From Matthiessen's Rule in a Silver:Gold Alloy
Electrical resistivity of Ag--0.29 at.% Au alloy has been measured and explained theoretically with the aim of understanding the deviations from Matthiessen's rule. The anisotropy in the electron--phonon interaction, the recoil of the impurity, mass-changes, nearest neighbour raidal and angular...
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Veröffentlicht in: | Solid state communications 1985-05, Vol.54 (8), p.749-752 |
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container_title | Solid state communications |
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creator | Kuckermann, V Thummes, G Mende, H H Tiwari, M D |
description | Electrical resistivity of Ag--0.29 at.% Au alloy has been measured and explained theoretically with the aim of understanding the deviations from Matthiessen's rule. The anisotropy in the electron--phonon interaction, the recoil of the impurity, mass-changes, nearest neighbour raidal and angular force-constant-changes and Debye--Waller factors have been taken into consideration. 18 ref.--AA |
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The anisotropy in the electron--phonon interaction, the recoil of the impurity, mass-changes, nearest neighbour raidal and angular force-constant-changes and Debye--Waller factors have been taken into consideration. 18 ref.--AA</abstract></addata></record> |
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source | ScienceDirect Journals (5 years ago - present) |
title | Electrical Deviations From Matthiessen's Rule in a Silver:Gold Alloy |
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