Physical review. B, Solid state · 1972 · 89 citations · 9 references
Materials ScienceQuantum ScienceSelf-consistent Electron-phonon CouplingPhonon SpectrumEngineeringPhysicsElectron-phonon CouplingNatural SciencesCondensed Matter PhysicsSuperconductivityApplied PhysicsQuantum MaterialsPhononRigid-atom ModelComputational ChemistryQuantum SolidQuantum ChemistryElectronic Structure
The validity of the rigid-atom model for electron-phonon coupling in the tight-binding approximation is examined within the linearized self-consistent theory. It is shown that the deformation-induced charge-density wave will generally reduce the strength of the coupling, thus reducing the Kohn anomaly in the phonon spectrum and the superconducting transition temperature computed from the rigid-atom model. The charge-density wave does not appear for certain modes; the optimal situation is that of the (nearly) half-filled band, when the rigid-atom model gives approximately correct results.
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Deformation Potentials and Mobilities in Non-Polar Crystals
J. Bardeen, W. Shockley · Physical Review · 1950 · 3.7K citations
Tight Binding and Transition-Metal Superconductivity
S. Barišić, J. Labbé, J. Friedel · Physical Review Letters · 1970 · 259 citations