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Microscopic inhomogeneity and superconducting properties of a two-dimensional Hubbard model for high-T_c cuprates

机译:高T_c铜酸盐的二维Hubbard模型的微观不均匀性和超导性质

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Recent scanning tunneling microscopy measurements on cuprate superconductors have revealed remarkable spatial inhomogeneities in the single-particle energy gap. Using cellular dynamical mean-field theory, we study the zero temperature superconducting properties of a single-band Hubbard model with a spatial modulation of the electron density. We find that the inhomogeneity in the electronic structure results in a substantial spatial variation in the superconducting order parameter and single-particle energy gap, reminiscent of the experimental results. In particular, we find that the order parameter and gap amplitudes in the hole-rich regions are significantly enhanced over the corresponding quantities in a uniform system, if the hole-rich regions are embedded in regions with smaller hole density.
机译:最近对铜酸盐超导体的扫描隧道显微镜测量结果显示,单粒子能隙中存在明显的空间不均匀性。使用细胞动力学平均场理论,我们研究了具有电子密度的空间调制的单带Hubbard模型的零温度超导特性。我们发现,电子结构的不均匀性导致超导阶数参数和单粒子能隙的显着空间变化,让人联想到实验结果。特别地,我们发现,如果将富孔区域嵌入在具有较小孔密度的区域中,则在均匀系统中,富孔区域中的阶数参数和间隙幅度将比相应数量显着提高。

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