Abstract
The shape and magnitude of the electrical resistivity \ensuremath{\rho}(T) is analyzed for four intermetallic compounds, and electron-phonon coupling constants \ensuremath{\lambda} are extracted. ${\mathrm{ReO}}_{3}$ is particularly interesting because a sharp departure from the Bloch-Gr\"uneisen shape can be attributed to high-frequency optical vibrations. The \ensuremath{\lambda} values for the oxide metals seem too large to be consistent with the absence of superconductivity, but the results generally agree well with a conventional Fermi-liquid interpretation. The Hall coefficient ${\mathit{R}}_{\mathit{H}}$ of ${\mathrm{ReO}}_{3}$ is found to agree well with theory.
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Publication Info
- Year
- 1993
- Type
- article
- Volume
- 47
- Issue
- 21
- Pages
- 14434-14439
- Citations
- 60
- Access
- Closed
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- DOI
- 10.1103/physrevb.47.14434