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The Strange Metal State of the Electron-Doped Cuprates
Annual Review of Condensed Matter Physics ( IF 14.3 ) Pub Date : 2020-03-16 , DOI: 10.1146/annurev-conmatphys-031119-050558
Richard L. Greene 1 , Pampa R. Mandal 1 , Nicholas R. Poniatowski 1 , Tarapada Sarkar 1
Affiliation  

An understanding of the high-temperature copper oxide (cuprate) superconductors has eluded the physics community for over thirty years and represents one of the greatest unsolved problems in condensed matter physics. Particularly enigmatic is the normal state from which superconductivity emerges, so much so that this phase has been dubbed a “strange metal.” In this article, we review recent research into this strange metallic state as realized in the electron-doped cuprates with a focus on their transport properties. The electron-doped compounds differ in several ways from their more thoroughly studied hole-doped counterparts, and understanding these asymmetries of the phase diagram may prove crucial to developing a final theory of the cuprates. Most of the experimental results discussed in this review have yet to be explained and remain an outstanding challenge for theory.

中文翻译:


电子掺杂铜酸盐的奇怪金属态

对高温氧化铜(铜酸盐)超导体的理解已经使物理学界避开了三十多年,并且代表了凝聚态物理中最大的未解决问题之一。尤其令人迷惑的是从中出现超导的常态,以至于该相被称为“奇怪的金属”。在本文中,我们将回顾最近在掺杂电子的铜酸盐中实现的这种奇怪的金属状态的研究,重点是其传输性能。电子掺杂的化合物与对其进行更深入研究的空穴掺杂的化合物有几种不同的方式,理解相图的这些不对称性对于开发最终的铜酸盐理论可能至关重要。

更新日期:2020-04-21
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