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Electronic phase diagram of high-temperature copper oxide superconductors

机译:高温氧化铜超导体的电子相图

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摘要

In order to understand the origin of high-temperature superconductivity in copper oxides, we must understand the normal state from which it emerges. Here, we examine the evolution of the normal state electronic excitations with temperature and carrier concentration in Bi2Sr2CaCu2O8+δ using angle-resolved photoemission. In contrast to conventional superconductors, where there is a single temperature scale Tc separating the normal from the superconducting state, the high-temperature superconductors exhibit two additional temperature scales. One is the pseudogap scale T, below which electronic excitations exhibit an energy gap. The second is the coherence scale Tcoh, below which sharp spectral features appear due to increased lifetime of the excitations. We find that T and Tcoh are strongly doping dependent and cross each other near optimal doping. Thus the highest superconducting Tc emerges from an unusual normal state that is characterized by coherent excitations with an energy gap.
机译:为了了解氧化铜中高温超导的起源,我们必须了解其出现的正常状态。在这里,我们使用角度分辨光发射技术研究了Bi2Sr2CaCu2O8 +δ中温度和载流子浓度下常态电子激发的演化。与常规的超导体相反,在常规的超导体中,有一个将正常状态与超导状态分开的温度标度Tc,而高温超导体则显示了两个附加的温度标度。一种是伪间隙标度T ,在其以下,电子激发表现出能隙。第二个是相干标度Tcoh,由于激发寿命的延长,在其下会出现清晰的光谱特征。我们发现T 和Tcoh强烈依赖掺杂,并且在最佳掺杂附近相互交叉。因此,最高的超导Tc从异常的正常状态中出现,该异常状态的特征是具有能隙的相干激发。

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