article Open AccessTop 1% cited
Effective Hamiltonian for the superconducting Cu oxides
Physical review. B, Condensed matter · 1988 · Vol. 37(7) · pp. 3759–3761
Fu‐Chun Zhang✉(Board of the Swiss Federal Institutes of Technology)T. M. Rice(Board of the Swiss Federal Institutes of Technology)
Abstract
Although assuming that doping creates holes primarily on oxygen sites, we derive explicitly a single-band effective Hamiltonian for the high-${T}_{c}$ Cu-oxide superconductors. Cu-O hybridization strongly binds a hole on each square of O atoms to the central ${\mathrm{Cu}}^{2+}$ ion to form a local singlet. This moves through the lattice in a similar way as a hole in the single-band effective Hamiltonian of the strongly interacting Hubbard model.
Physics of Superconductivity and MagnetismAdvanced Condensed Matter PhysicsCopper-based nanomaterials and applicationsHamiltonian (control theory)SuperconductivityCondensed matter physicsHubbard modelPhysicsDopingLattice (music)IonMaterials scienceQuantum mechanics
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References
New Approach to the Theory of Superexchange Interactions
Physical Review · 1959 · 2,540 citations
Charge transfer excitations and superconductivity in “ionic” metals
Solid State Communications · 1987 · 944 citations
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