Interpretation of the Hall Coefficient and the Resistivity of Noble Metal Alloys
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The behavior of the Hall coefficients and the electrical resistivities of α-phase alloys of copper and silver can be explained by formulae similar to those for the two band model. Anisotropic Fermi surface is divided into electron- and hole-like parts and the change of the energy gap with alloying is neglected. The calculated Hall coefficient vs. electron-atom ratio curves show the same type of minimum which was observed by Koster et al. The concentration dependence of the resistivity is shown to be a form ρ = ρ_0 + CZ^2(D-x)x, where ρ_0 is the resistivity of pure noble metal, Z and x are the relative valency and the atomic fraction of solute, C and D are constants for a given temperature. Also it is suggested that the qualitative explanation of the thermoelectric power of these alloys is possible.
- 社団法人日本物理学会の論文
- 1967-12-05
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