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铜酸盐赝能隙相中的异常:竞争基态与倒格矢散射的作用

Anomalies in the pseudogap phase of the cuprates: competing ground states and the role of umklapp scattering.

作者信息

Robinson Neil J, Johnson Peter D, Rice T Maurice, Tsvelik Alexei M

机构信息

Institute for Theoretical Physics, University of Amsterdam, Science Park 904, Postbus 94485, 1098 XH Amsterdam, The Netherlands.

出版信息

Rep Prog Phys. 2019 Dec;82(12):126501. doi: 10.1088/1361-6633/ab31ed. Epub 2019 Jul 13.

Abstract

Over the past two decades, advances in computational algorithms have revealed a curious property of the two-dimensional Hubbard model (and related theories) with hole doping: the presence of close-in-energy competing ground states that display very different physical properties. On the one hand, there is a complicated state exhibiting intertwined spin, charge, and pair density wave orders. We call this 'type A'. On the other hand, there is a uniform d-wave superconducting state that we denote as 'type B'. We advocate, with the support of both microscopic theoretical calculations and experimental data, dividing the high-temperature cuprate superconductors into two corresponding families, whose properties reflect either the type A or type B ground states at low temperatures. We review the anomalous properties of the pseudogap phase that led us to this picture, and present a modern perspective on the role that umklapp scattering plays in these phenomena in the type B materials. This reflects a consistent framework that has emerged over the last decade, in which Mott correlations at weak coupling drive the formation of the pseudogap. We discuss this development, recent theory and experiments, and open issues.

摘要

在过去二十年中,计算算法的进步揭示了具有空穴掺杂的二维哈伯德模型(及相关理论)的一个奇特性质:存在能量相近的竞争基态,它们展现出非常不同的物理性质。一方面,存在一种复杂状态,表现出相互交织的自旋、电荷和对密度波序。我们将其称为“ A 型”。另一方面,存在一种均匀的 d 波超导态,我们将其记为“ B 型”。在微观理论计算和实验数据的支持下,我们主张将高温铜酸盐超导体分为两个相应的家族,它们的性质反映了低温下的 A 型或 B 型基态。我们回顾了导致我们形成这幅图景的赝能隙相的反常性质,并给出了关于 Umklapp 散射在 B 型材料这些现象中所起作用的现代观点。这反映了过去十年中出现的一个一致框架,其中弱耦合下的莫特关联驱动了赝能隙的形成。我们讨论这一进展、近期的理论和实验以及未解决的问题。

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