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Local pairs in high-temperature superconductors: The concept of pseudogap

机译:高温超导体中的局部对:赝间隙的概念

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摘要

The origin of the high-temperature superconductivity of cuprates remains a subject of debate after almost four decades of investigation. One of the main questions - what is the physics behind the mechanism of superconducting pairing, which makes it possible to obtain real Cooper pairs at temperatures much higher than 100 K, remains open. It is believed that the answer can be obtained by the studying the properties of cuprates in the normal state above T-c, where the pseudogap (PG) opens at T* >> T-c. The number of papers devoted to the study of PG is extraordinarily large, but its physics also remains in question. In cuprates, the question arises whether the pseudogap phase arises exclusively due to antiferromagnetic fluctuations, spin or charge density waves, or whether it can be explained by the formation below T* of specific paired fermions, the so-called local pairs. We review studies on both approaches to PG that should clarify this issue. In addition to theoretical considerations, we analyze and discuss various experimental results of fluctuation conductivity and PG measurements, as well as magnetic measurements, in an attempt to prove the decisive role of local pairs in the formation of the PG state. Accordingly, various types of supposed magnetic interactions can be considered as possible mechanisms of superconducting pairing in high-temperature superconductors.
机译:高温的起源超导的铜酸盐仍然是一个问题经过近四年的的讨论调查。是背后的物理机制的超导配对,这使得它成为可能获得真正的库伯对的温度高于100 K,仍然开放。答案可以得到学习铜酸盐的性质在正常状态以上温度系数,赝隙(PG)打开T *> >温度系数。PG是非常大的,但是它的物理还在的问题。问题是是否在赝能隙相位由于反铁磁性的出现完全波动,自旋、电荷密度波,或是否可以解释的形成下面T *特定配对的费米子所谓的地方。PG方法应该澄清这个问题。除了理论上的考虑,我们分析和讨论各种实验结果波动的导电性和PG测量,以及磁测量,在一个尝试为了证明当地成对的决定性的作用PG状态的形成。类型的磁相互作用能认为可能的机制在高温超导配对超导体。

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