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Theory for Superconducting Properties of the Cuprates: Doping Dependence of the Electronic Excitations and Shadow States

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arxiv cond-mat/9509179 v1 pith:73UQKTYM submitted 1995-09-29 cond-mat

classification cond-mat
keywords dopingdependenceelectronicfindshadowstatessuperconductingsystems
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abstract

The superconducting phase of the 2D one-band Hubbard model is studied within the FLEX approximation and by using an Eliashberg theory. We investigate the doping dependence of $T_c$, of the gap function $\Delta ({\bf k},\omega)$ and of the effective pairing interaction. Thus we find that $T_c$ becomes maximal for $13 \; \%$ doping. In {\it overdoped} systems $T_c$ decreases due to the weakening of the antiferromagnetic correlations, while in the {\it underdoped} systems due to the decreasing quasi particle lifetimes. Furthermore, we find {\it shadow states} below $T_c$ which affect the electronic excitation spectrum and lead to fine structure in photoemission experiments.

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