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- W1998724835 abstract "The electronic thermal resistivity of metals can be empirically split into two parts, one of which, the so-called elastic part, is directly related to the electrical resistivity through the Wiedemann-Franz-Lorenz law, and thus is of no particular interest. The remainder is the inelastic part which is the only part that needs investigation in conjunction with the electrical resistivity in any study of the transport properties. Such a split of the thermal resistivity is very useful at high temperatures where the inelastic part becomes independent of the lattice dynamics and, for spherical Fermi surfaces, the contributions to this resistivity of both normal and umklapp processes can be evaluated explicitly in a simple fashion. The comparison of such calculations with experimental results, which we undertake for the alkali and noble metals, forms a simple and convenient test of the electron-phonon interaction." @default.
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- W1998724835 date "1972-09-15" @default.
- W1998724835 modified "2023-09-26" @default.
- W1998724835 title "High-Temperature Thermal Resistivity of Monovalent Metals and Electron-Phonon Interaction" @default.
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- W1998724835 doi "https://doi.org/10.1103/physrevb.6.2082" @default.
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