Theory of energy bands and related properties of 4d-transition metals. II. The electron-phonon matrix element, superconductivity and ion core enhancement
- 1 June 1977
- journal article
- Published by IOP Publishing in Journal of Physics F: Metal Physics
- Vol. 7 (6) , 1009-1028
- https://doi.org/10.1088/0305-4608/7/6/017
Abstract
For pt.I see ibid., vol.7, p.613 (1977). The variation of the electronic contribution eta to the electron-phonon mass enhancement is studied across the 4d transition metal series within the Gaspari-Gyorffy rigid muffin tin (RMT) approximation. The pd and df matrix elements are expressed in terms of band parameters. It is shown that hybridization enhances the p density of states for Nb, but reduces it for transition metals to the right of the series, whose superconductivity is, therefore, determined by df scattering which still remains dominant even after a 50% reduction by screening of the RMT results. The importance of the ion core in enhancing the scattering through orthogonality constraints and reduction in effective screening, is illustrated by studying the large volume dependence of eta shown by the early transition metals and rare earths.Keywords
This publication has 28 references indexed in Scilit:
- Correlation between-Band Occupancy and Crystal Structure in the Rare EarthsPhysical Review Letters, 1977
- Electron-phonon interaction in cubic systems: Application to niobiumPhysical Review B, 1976
- Superconductivity and electronic density of statesJournal of Physics F: Metal Physics, 1976
- On the calculation of electron-phonon mass enhancement of transition metals in the tight-binding formalismJournal of Physics F: Metal Physics, 1975
- Transition temperature of strong-coupled superconductors reanalyzedPhysical Review B, 1975
- Localized description of superconductivity in narrow-band metalsPhysical Review B, 1974
- Superconductivity in "Amorphous" Transition-Metal Alloy FilmsPhysical Review Letters, 1973
- A simple theory of the electron-phonon mass enhancement in transition metalsJournal of Physics F: Metal Physics, 1973
- Electronic Structure of the fcc Transition Metals Ir, Rh, Pt, and PdPhysical Review B, 1970
- Effects of Configuration Interaction on Intensities and Phase ShiftsPhysical Review B, 1961