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Superconductivity in the Pseudogap State in the Hot-Spot Model: Ginzburg–Landau Expansion

机译:热点模型中假多哥状态的超导:金茨堡-朗道扩展

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Peculiarities of the superconducting state (s and d pairing) are considered in the model of the pseudogap state induced by short-range order fluctuations of the dielectric (AFM (SDW) or CDW) type, which is based on the model of the Fermi surface with "hot spots." A microscopic derivation of the Ginzburg–Landau expansion is given with allowance for all Feynman diagrams in perturbation theory in the electron interaction with short-range order fluctuations responsible for strong scattering in the vicinity of hot spots. The superconducting transition temperature is determined as a function of the effective pseudogap width and the correlation length of short-range order fluctuations. Similar dependences are derived for the main parameters of a superconductor in the vicinity of the superconducting transition temperature. It is shown, in particular, that the specific heat jump at the transition point is considerably suppressed upon a transition to the pseudogap region on the phase diagram.
机译:在基于费米表面模型的电介质(AFM(SDW)或CDW)型短程波动引起的伪间隙状态模型中考虑了超导态(s和d对)的特殊性与“热点”。对于在扰动理论中所有费因曼图的电子相互作用中,金茨堡-兰道扩展的微观推导,均考虑到了电子相互作用,其中短程波动引起热点附近的强散射。根据有效伪间隙宽度和短程阶跃波动的相关长度确定超导转变温度。对于在超导转变温度附近的超导体的主要参数,得出类似的依赖性。尤其显示出,在过渡到相图上的伪间隙区域时,在过渡点处的比热跳跃被显着地抑制。

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