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Discovery of Weyl Fermion Semimetals and Topological Fermi Arc States
Annual Review of Condensed Matter Physics ( IF 14.3 ) Pub Date : 2017-03-31 00:00:00 , DOI: 10.1146/annurev-conmatphys-031016-025225
M. Zahid Hasan,Su-Yang Xu,Ilya Belopolski,Shin-Ming Huang

Weyl semimetals are conductors whose low-energy bulk excitations are Weyl fermions, whereas their surfaces possess metallic Fermi arc surface states. These Fermi arc surface states are protected by a topological invariant associated with the bulk electronic wave functions of the material. Recently, it has been shown that the TaAs and NbAs classes of materials harbor such a state of topological matter. We review the basic phenomena and experimental history of the discovery of the first Weyl semimetals, starting with the observation of topological Fermi arcs and Weyl nodes in TaAs and NbAs by angle and spin-resolved surface and bulk sensitive photoemission spectroscopy and continuing through magnetotransport measurements reporting the Adler–Bell–Jackiw chiral anomaly. We hope that this article provides a useful introduction to the theory of Weyl semimetals, a summary of recent experimental discoveries, and a guideline to future directions.

中文翻译:


Weyl Fermion半金属和拓扑费米弧态的发现

魏尔半金属是导体,其低能本体激发是魏尔费米子,而它们的表面则具有金属费米弧表面态。这些费米弧形表面状态受到与材料的体电子波函数相关的拓扑不变性的保护。最近,已经显示出TaAs和NbAs类的材料具有这种拓扑状态。我们回顾了第一种Weyl半金属的发现的基本现象和实验历史,从通过角度和自旋分辨表面和体敏光发射光谱学观察TaAs和NbAs中的拓扑费米弧和Weyl节点开始,并继续进行磁传输测量报告Adler–Bell–Jackiw手性异常。

更新日期:2017-03-31
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