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Observation of 1D Fermi arc states in Weyl semimetal TaAs.


ABSTRACT: Fermi arcs on Weyl semimetals exhibit many exotic quantum phenomena. Usually found on atomically flat surfaces with approximate translation symmetry, Fermi arcs are rooted in the peculiar topology of bulk Bloch bands of 3D crystals. The fundamental question of whether a 1D Fermi arc can be probed remains unanswered. Such an answer could significantly broaden potential applications of Weyl semimetals. Here, we report a direct observation of robust edge states on atomic-scale ledges in TaAs using low-temperature scanning tunneling microscopy/spectroscopy. Spectroscopic signatures and theoretical calculations reveal that the 1D Fermi arcs arise from the chiral Weyl points of bulk crystals. The crossover from 2D Fermi arcs to eventual complete localization on 1D edges was arrested experimentally on a sequence of surfaces. Our results demonstrate extreme robustness of the bulk-boundary correspondence, which offers topological protection for Fermi arcs, even in cases in which the boundaries are at the atomic-scale. The persistent 1D Fermi arcs can be profitably exploited in miniaturized quantum devices.

SUBMITTER: Zheng X 

PROVIDER: S-EPMC9466953 | biostudies-literature | 2022 Aug

REPOSITORIES: biostudies-literature

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Observation of 1D Fermi arc states in Weyl semimetal TaAs.

Zheng Xiaohu X   Gu Qiangqiang Q   Liu Yiyuan Y   Tong Bingbing B   Zhang Jian-Feng JF   Zhang Chi C   Jia Shuang S   Feng Ji J   Du Rui-Rui RR  

National science review 20211025 8


Fermi arcs on Weyl semimetals exhibit many exotic quantum phenomena. Usually found on atomically flat surfaces with approximate translation symmetry, Fermi arcs are rooted in the peculiar topology of bulk Bloch bands of 3D crystals. The fundamental question of whether a 1D Fermi arc can be probed remains unanswered. Such an answer could significantly broaden potential applications of Weyl semimetals. Here, we report a direct observation of robust edge states on atomic-scale ledges in TaAs using  ...[more]

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