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Theory of superconductivity in strongly correlated electron systems

机译:具有强相关电子系统的超导性理论

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摘要

In the correlated electron system with the pseudogap, full-gapped domains and Fermi-arced domains coexist. These domains are created by the quantum-fluctuated antiferromagnetic correlation that generates the short-ranged attractive potential to produce the Fermi arcs and the superconductivity. In the full-gapped domains, s-wave or (d(x2-y2) +/- id(xy))-wave symmetry of the electron pairs is favored. In the Fermi-arced domains, only d(x2-y2)-wave symmetry of pairs is stable. Superconductivity of different pairing symmetry coexists in different domains as well. Different from the Cooper pairs, the correlated electrons pair up in the real space with an energy gap. Gapless states, on the contrary, hinder the development of superconductivity.
机译:在具有伪影像的相关电子系统中,全盖域和FERMI-ARCED域共存。 这些域通过量子波动的反铁磁相关产生,产生短程的有吸引力,以产生费米弧和超导性。 在全盖域,S波或(D(x2-y2)+/-id(xy)) - 电子对的波对称。 在Fermi-Arced域中,只有D(x2-y2) - 对称对对称是稳定的。 不同配对对称在不同域中的不同配对对称的超导性。 与Cooper对不同,相关电子在具有能隙的真实空间中对。 相反,无间断的国家阻碍了超导的发展。

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