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通过 Weyl 节点作为拓扑缺陷实现表面到体的费米弧。

Surface to bulk Fermi arcs via Weyl nodes as topological defects.

机构信息

School of Physics, Korea Institute for Advanced Study, Seoul 02455, Korea.

Quantum Universe Center, Korea Institute for Advanced Study, Seoul 02455, Korea.

出版信息

Nat Commun. 2016 Nov 15;7:13489. doi: 10.1038/ncomms13489.

Abstract

A hallmark of Weyl semimetal is the existence of surface Fermi arcs. An intriguing question is what determines the connectivity of surface Fermi arcs, when multiple pairs of Weyl nodes are present. To answer this question, we show that the locations of surface Fermi arcs are predominantly determined by the condition that the Zak phase integrated along the normal-to-surface direction is . The Zak phase can reveal the peculiar topological structure of Weyl semimetal directly in the bulk. Here, we show that the winding of the Zak phase around each projected Weyl node manifests itself as a topological defect of the Wannier-Stark ladder, energy eigenstates under an electric field. Remarkably, this leads to bulk Fermi arcs, open-line segments in the bulk spectra. Bulk Fermi arcs should exist in conjunction with surface counterparts to conserve the Weyl fermion number under an electric field, which is supported by explicit numerical evidence.

摘要

Weyl 半金属的一个特点是存在表面费米弧。一个有趣的问题是,当存在多对 Weyl 节点时,表面费米弧的连接性由什么决定。为了回答这个问题,我们表明,表面费米弧的位置主要由沿垂直于表面方向积分的 Zak 相为 的条件决定。Zak 相可以直接在体相中揭示 Weyl 半金属的特殊拓扑结构。在这里,我们表明,Zak 相围绕每个投影 Weyl 节点的缠绕表现为在电场下的 Wannier-Stark 阶梯的拓扑缺陷,即能量本征态。值得注意的是,这导致了体费米弧,即体能带中的开线段。为了在电场下保持 Weyl 费米子数守恒,体费米弧应该与表面费米弧共存,这一点得到了明确的数值证据的支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7453/5116079/447ddb614d1b/ncomms13489-f1.jpg

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