Inhomogeneous Superconductivity and the ‘Pseudogap’ State of Novel Superconductors

V. Kresin, S. Ovchinnikov, S. Wolf
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Abstract

This chapter discusses the high-Tc oxides, which display many unusual properties above Tc, especially for the underdoped compounds. One can observe some features typical for the superconducting state, such as the energy gap, anomalous diamagnetism, and the isotope effect; they coexist with finite resistance. These features are caused by an intrinsic inhomogeneity of the compound. Various energy scales (Tc, Tc*, T*) can be introduced. The system contains a set of superconducting ‘islands’ embedded in a normal metallic matrix. The inhomogeneity is caused by the statistical nature of doping and the pair-breaking effect. The formation of a macroscopic superconducting phase (at T = Tc) corresponds to the transition, which is of a percolative nature. The resistive and Meissner transitions are split. The granular superconductors are inhomogeneous and their properties are similar to those of doped systems. The ordered doping should lead to an increase in the value of the critical temperature.
新型超导体的非均匀超导性和“赝隙”态
本章讨论了高Tc氧化物,它们在Tc以上表现出许多不寻常的性质,特别是对于欠掺杂的化合物。可以观察到超导态的一些典型特征,如能隙、异常抗磁性和同位素效应;它们与有限的阻力共存。这些特征是由化合物固有的不均匀性引起的。可以引入各种能量尺度(Tc, Tc*, T*)。该系统包含一组嵌入在普通金属基体中的超导“岛”。不均匀性是由掺杂的统计性质和对断裂效应引起的。宏观超导相(T = Tc)的形成与相变相对应,具有渗透性质。电阻跃迁和迈斯纳跃迁是分裂的。颗粒超导体是不均匀的,其性质与掺杂体系相似。有序掺杂会导致临界温度的升高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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