Effect of dopant atoms on local superexchange in cuprate superconductors: a perturbative treatment
arXiv:0809.2919 · doi:10.1103/PhysRevB.79.144424
Abstract
Recent scanning tunneling spectroscopy experiments have provided evidence that dopant impurities in high- Tc superconductors can strongly modify the electronic structure of the CuO2 planes nearby, and possibly influence the pairing. To investigate this connection, we calculate the local magnetic superexchange J between Cu ions in the presence of dopants within the framework of the three-band Hubbard model, up to fifth-order in perturbation theory. We demonstrate that the sign of the change in J depends on the relative dopant-induced spatial variation of the atomic levels in the CuO2 plane, contrary to results obtained within the one-band Hubbard model. We discuss some realistic cases and their relevance for theories of the pairing mechanism in the cuprates
5 pages, 4 figures, revised version
References in corpus (5)
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- Interplay of electron-lattice interactions and superconductivity in Bi2Sr2CaCu2O8+d
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Cited by in corpus (7)
- A Systematic Study of Electron-Phonon Coupling to Oxygen Modes Across the Cuprates
- On the Electron Pairing Mechanism of Copper-Oxide High Temperature Superconductivity
- Universal Disorder in Bi2Sr2CaCu2O8+x
- Local modulations of the spin-fluctuation mediated pairing interaction by impurities in d-wave superconductors
- Modulation of pairing interaction in BiSrCaCuO by an O dopant: a density functional theory study
- First principle prediction of structural distortions in the cuprates and their impact on the electronic structure
- Modulations of the local pairing interaction near magnetic impurities in d-wave superconductors