无序系统中的动态关联:对高温超导的影响

Takeshi Egami
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引用次数: 0

摘要

液体和气体的原子动态相关性程度不同;在气体中,原子几乎没有相关性,而在液体中,原子具有很强的相关性。这种区别也适用于电子系统。费米液体实际上类似于气体,而强相关电子则类似于液体。掺杂莫特绝缘体与过冷液体具有相同的特征。这种区别对超导有重要影响。我们讨论了液体中动态原子关联的性质,以及强电子关联和玻色-爱因斯坦凝聚对铜酸盐高温超导性的可能影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic Correlations in Disordered Systems: Implications for High-Temperature Superconductivity
Liquids and gases are distinct in their extent of dynamic atomic correlations; in gases, atoms are almost uncorrelated, whereas they are strongly correlated in liquids. This distinction applies also to electronic systems. Fermi liquids are actually gas-like, whereas strongly correlated electrons are liquid-like. Doped Mott insulators share characteristics with supercooled liquids. Such distinctions have important implications for superconductivity. We discuss the nature of dynamic atomic correlations in liquids and a possible effect of strong electron correlations and Bose–Einstein condensation on the high-temperature superconductivity of the cuprates.
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