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铜酸盐超导体相图中的赝自旋斯格明子

Pseudo-spin skyrmions in the phase diagram of cuprate superconductors.

作者信息

Morice C, Chakraborty D, Montiel X, Pépin C

机构信息

Institut de Physique Théorique, CEA, Université Paris-Saclay, Saclay, France.

出版信息

J Phys Condens Matter. 2018 Jul 25;30(29):295601. doi: 10.1088/1361-648X/aacc0f. Epub 2018 Jun 27.

Abstract

Topological states of matter are at the root of some of the most fascinating phenomena in condensed matter physics. Here we argue that skyrmions in the pseudo-spin space related to an emerging SU(2) symmetry enlighten many mysterious properties of the pseudogap phase in under-doped cuprates. We detail the role of the SU(2) symmetry in controlling the phase diagram of the cuprates, in particular how a cascade of phase transitions explains the arising of the pseudogap, superconducting and charge modulation phases seen at low temperature. We specify the structure of the charge modulations inside the vortex core below T , as well as in a wide temperature region above T , which is a signature of the skyrmion topological structure. We argue that the underlying SU(2) symmetry is the main structure controlling the emergent complexity of excitations at the pseudogap scale T . The theory yields a gapping of a large part of the anti-nodal region of the Brillouin zone, along with q  =  0 phase transitions, of both nematic and loop currents characters.

摘要

物质的拓扑态是凝聚态物理中一些最引人入胜的现象的根源。在这里,我们认为与新兴的SU(2)对称性相关的赝自旋空间中的斯格明子揭示了欠掺杂铜酸盐中赝能隙相的许多神秘性质。我们详细阐述了SU(2)对称性在控制铜酸盐相图中的作用,特别是一系列相变如何解释低温下出现的赝能隙、超导和电荷调制相。我们明确了低于转变温度T时涡旋核内部以及高于T的较宽温度区域内电荷调制的结构,这是斯格明子拓扑结构的一个特征。我们认为潜在的SU(2)对称性是控制赝能隙尺度T处激发的涌现复杂性的主要结构。该理论导致布里渊区大部分反节点区域出现能隙,以及具有向列相和环流特征的q = 0相变。

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