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波动自旋密度波理论中拓扑序与对称性破缺的交织

Intertwining Topological Order and Broken Symmetry in a Theory of Fluctuating Spin-Density Waves.

作者信息

Chatterjee Shubhayu, Sachdev Subir, Scheurer Mathias S

机构信息

Department of Physics, Harvard University, Cambridge, Massachusetts 02138, USA.

Perimeter Institute for Theoretical Physics, Waterloo, Ontario, Canada N2L 2Y5.

出版信息

Phys Rev Lett. 2017 Dec 1;119(22):227002. doi: 10.1103/PhysRevLett.119.227002. Epub 2017 Nov 29.

Abstract

The pseudogap metal phase of the hole-doped cuprate superconductors has two seemingly unrelated characteristics: a gap in the electronic spectrum in the "antinodal" region of the square lattice Brillouin zone and discrete broken symmetries. We present a SU(2) gauge theory of quantum fluctuations of magnetically ordered states which appear in a classical theory of square lattice antiferromagnets, in a spin-density wave mean field theory of the square lattice Hubbard model, and in a CP^{1} theory of spinons. This theory leads to metals with an antinodal gap and topological order which intertwines with the observed broken symmetries.

摘要

空穴掺杂铜酸盐超导体的赝能隙金属相具有两个看似不相关的特征

在正方晶格布里渊区的“反节点”区域的电子能谱中存在能隙以及离散的对称性破缺。我们提出了一个关于磁有序态量子涨落的SU(2)规范理论,该磁有序态出现在正方晶格反铁磁体的经典理论、正方晶格哈伯德模型的自旋密度波平均场理论以及自旋子的CP¹理论中。这个理论导致了具有反节点能隙和拓扑序的金属,且这种拓扑序与观测到的对称性破缺相互交织。

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