3.8 Article

Theory for electron- and hole-doped cuprate superconductors:: d-wave symmetry order parameter

Journal

EUROPHYSICS LETTERS
Volume 53, Issue 3, Pages 371-377

Publisher

EDP SCIENCES S A
DOI: 10.1209/epl/i2001-00163-6

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Using as a model the Hubbard Hamiltonian, we determine various basic properties of electron- and hole-doped cuprate superconductors for a spin-fluctuation-induced pairing mechanism. We find for both hole- and electron-doped cuprates d(x2-y2) symmetry for the superconducting order parameter. We find a narrow doping range of superconductivity for electron-doped superconductors like Nd2-xCexCuO4 and Pr2-xCexCuO4. The superconducting transition temperatures T-c(x) for various electron doping concentrations x are calculated to be much smaller than for hole-doped cuprates due to the different energy dispersion and a flat band well below the Fermi level for electron-doped superconductors. Lattice disorder may sensitively distort the symmetry d(x2-y2) via electron-phonon interaction. We present a general discussion of the symmetry of the order parameter which should apply also to other spin-fluctuation-induced superconductors. Furthermore, we show how our theory may also explain the neutron scattering data.

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