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Gorkov equations for a pseudogapped high-temperature superconductor

机译:伪间隙高温超导体的Gorkov方程

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摘要

A phenomenological theory of superconductivity based on the two-body Cooperon propagator is presented. This theory takes the form of a modified Gorkov equation for the Green’s function and allows one to model the effect of local superconducting correlations and long-range phase fluctuations on the spectral properties of high-temperature superconductors, both above and below Tc. A model is proposed for the Cooperon propagator, which provides a simple physical picture of the pseudogap phenomenon, as well as insights into the doping dependence of the spectral properties. Numerical calculations of the density of states and spectral functions based on this model are also presented, and compared with the experimental tunneling (STM) and photoemission (ARPES) data. It is found, in particular, that the sharpness of the peaks in the density of states is related to the strength and the range of the superconducting correlations and that the apparent pseudogap in STM and ARPES can be different, although the underlying model is the same.
机译:提出了基于两体Cooperon传播子的超导现象学理论。这一理论采取了格林函数的修正Gorkov方程形式,并允许人们对局部超导相关性和远距离相位波动对高温超导体的光谱特性(高于和低于Tc)的影响进行建模。提出了一种用于Cooperon传播子的模型,该模型提供了伪间隙现象的简单物理图,以及对光谱特性的掺杂依赖性的见解。还给出了基于该模型的状态密度和光谱函数的数值计算,并将其与实验隧穿(STM)和光发射(ARPES)数据进行了比较。特别发现,尽管基本模型相同,但状态密度峰的锐度与超导相关的强度和范围有关,并且STM和ARPES中的表观伪间隙可能不同。 。

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