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Application of Gutzwiller's Variational Method to the Metal-Insulator Transition

Physical review. B, Solid state · 1970 · Vol. 2(10) · pp. 4302–4304

Abstract

It is shown that the approximate variational calculation of Gutzwiller predicts a metal-insulator transition as the intra-atomic Coulomb interaction is increased for the case of one electron per atom. The susceptibility and effective mass are calculated in the metallic phase and are found to be enhanced by a common factor which diverges at the critical value of the interaction.

Physics of Superconductivity and MagnetismQuantum and electron transport phenomenaChemical and Physical Properties of MaterialsCoulombPhysicsCondensed matter physicsVariational methodMetal–insulator transitionElectronAtom (system on chip)MetalAtomic physicsInsulator (electricity)
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References
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Proceedings of the Royal Society of London A Mathematical and Physical Sciences · 1964 · 1,165 citations
Electron correlations in narrow energy bands
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