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Electron-Phonon Interaction and Strong Correlations in High-Temperature Superconductors: One can not avoid the unavoidable

机译:电子 - 声子相互作用和高温超导体的强关系:一个人不能避免不可避免的

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The important role of the electron-phonon interaction (EPI) in explaining the properties of the normal state and pairing mechanism in high-Tc superconductors (HTSC) is discussed. A number of experimental results are analyzed such as: dynamical conductivity, Raman scattering, neutron scattering, ARPES, tunnelling measurements, isotope effect and etc. They give convincing evidence that the EPI is strong and dominantly contributes to pairing in HTSC oxides. It is argued that strong electronic correlations in conjunction with the pronounced (in relatively weakly screened materials) EPI are unavoidable ingredients for the microscopic theory of pairing in HTSC oxides. I present the well defined and controllable theory of strong correlations and the EPI. It is shown that strong correlations give rise to the pronounced forward scattering peak in the EPI — the FSP theory. The FSP theory explains in a consistent way several (crucial) puzzles such as much smaller transport coupling constant than the pairing one (tr ph), which are present if one interprets the results in HTSC oxides by the old Migdal-Eliashberg theory for the EPI. The ARPES non-shift puzzle — where the nodal kink at 70 meV is unshifted in the superconducting state while the anti-nodal one at 40 meV is shifted, can be explained at present only by the FSP theory. It predicts also: (1) a knee-like shape of the imaginary part of the self-energy at < what has been recently confirmed in ARPES measurements; (2) that the Coulomb scattering gives very small coupling constant C ph, which is also confirmed in ARPES spectra where C < 0.4 and ph > 1. A number of other interesting predictions of the FSP theory are also discussed.
机译:讨论了电子 - 声子相互作用(EPI)在说明高TC超导体(HTSC)中的正常状态和配对机构的性质中的重要作用。分析了许多实验结果,例如:动态导电性,拉曼散射,中子散射,ARPES,隧道测量,同位素效应等。它们给予令人信服的证据表明EPI强大并占据了HTSC氧化物的配对。应认为,与发音(相对弱筛选的材料)的强电子相关性是用于在HTSC氧化物中配对的显微理论的不可避免的成分。我介绍了良好的强烈相关和ePI的定义和可控理论。结果表明,强烈的相关性引起了EPI中的发明前进散射峰 - FSP理论。 FSP理论以一致的方式解释了若干(至关重要的)谜题,例如比配对(TR pH)恒定的较小的传输耦合常数,如果一个人通过旧的MIGDAL-ELIASHBERG理论对EPI解释HTSC氧化物的结果。 ARPES非移位拼图 - 其中70meV处的节点扭结在超导状态下,同时偏移40meV的抗节点,可以仅通过FSP理论来解释。它还预测:(1)在ARPES测量中最近确认的自我能量的虚部的虚构部分的膝关节形状; (2)Coulomb散射给出非常小的偶联常数C pH,也在ARPes光谱中证实,其中C <0.4和pH> 1。还讨论了FSP理论的许多其他有趣的预测。

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