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Renormalization group study of the electron-phonon interaction in high-T-c cuprates

机译:高T-c铜酸盐中电子与声子相互作用的重归一化研究

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We generalize the numerical renormalization group (RG) scheme of Honerkamp et al. (Phys. Rev. B, 63 (2001) 035109), Zanchi et al. (Europhys. Lett., 44 (1997) 235; Phys. Rev. B, 61 (2000) 13609) and Halboth et al. (Phys. Rev. Lett., 85 (2000) 5162) to study the phonon-mediated retarded interactions in the high-T-c cuprates. We find that three sets of phonon-mediated retarded quasiparticle scatterings grow under RG flow. These scatterings share the following common features: 1) the initial and final quasiparticle momenta are in the antinodal regions, and 2) the scattering amplitudes have a x(2)-y(2) symmetry. All three sets of retarded interaction are driven to strong coupling by the magnetic fluctuations around (pi/a, pi/a). After growing strong, these retarded interaction will trigger density wave orders with d-wave symmetry. However, due to the d-wave form factor they will leave the nodal quasiparticle unaffected. We conclude that the main effect of electron-phonon coupling in the cuprates is to promote these density wave orders.
机译:我们归纳了Honerkamp等人的数值重归一化组(RG)方案。 (Phys.Rev.B,63(2001)035109),Zanchi等。 (Europhys.Lett。,44(1997)235; Phys。Rev. B,61(2000)13609)和Halboth等人。 (Phys。Rev. Lett。,85(2000)5162)研究高T-c铜酸盐中声子介导的相互作用迟缓。我们发现三组声子介导的延迟准粒子散射在RG流下生长。这些散射具有以下共同特征:1)初始和最终的准粒子动量在反节点区域中,以及2)散射幅度具有x(2)-y(2)对称性。 (pi / a,pi / a)周围的磁波动将所有三组延迟相互作用驱动为强耦合。在变强之后,这些延迟的相互作用将触发具有d波对称性的密度波阶。但是,由于d波形因素,它们将使节点准粒子不受影响。我们得出结论,铜中的电子-声子耦合的主要作用是促进这些密度波阶。

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