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Influence of correlations on transitive electron-phonon couplings in cuprate superconductors

机译:相关性对铜酸盐超导体中瞬态电子-声子耦合的影响

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We investigate a model for the CuO_2 plane of high-T_c superconductors where the charge carriers are coupled to A_(lg) and B_(lg) symmetric out-of plane vibrations of the oxygen atoms in the presence of local Hubbard correlations. The coupling is implemented via a modulation of the hopping integral and we calculate the renormalization of vertex and pairing scattering functions based on the time-dependent Gutziller approximation. Contrary to local electron-phonon couplings we find that the transitive coupling can even be enhanced by correlations for certain momenta and symmetries of the vibrations. While this effect may be important for certain properties, we find that, with regard to superconductivity, electron-electron correlations still generically lead to a suppression of the pairing correlations. Our results allow for an estimate of correlation effects on the electron-phonon induced pair scattering from weak electron-electron interactions up to the Mott regime. For onsite repulsions relevant to cuprate superconductors our calculations reveal a significant contribution of B_(1g) phonons to d-wave superconductivity.
机译:我们研究了一个高T_c超导体的CuO_2平面的模型,其中电荷载流子耦合到存在局部Hubbard相关性的氧原子的A_(lg)和B_(lg)对称平面外振动。耦合是通过调制跳变积分来实现的,并且我们基于时间相关的Gutziller近似来计算顶点的重新归一化和配对散射函数。与局部电子-声子耦合相反,我们发现传递耦合甚至可以通过某些矩和振动对称性的相关性来增强。尽管这种效应对于某些特性可能很重要,但我们发现,关于超导性,电子-电子相关性仍然普遍导致配对相关性的抑制。我们的结果允许估计从弱的电子-电子相互作用直至Mott态对电子-声子感应对散射的相关影响。对于与铜酸盐超导体有关的现场排斥,我们的计算表明B_(1g)声子对d波超导性有重大贡献。

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