4.8 Article

Experimental Realization of Two-Dimensional Weak Topological Insulators

期刊

NANO LETTERS
卷 22, 期 7, 页码 3125-3132

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.nanolett.2c00555

关键词

2D weak topological insulator; Dirac cones; flat band

资金

  1. National Natural Science Foundation of China [12074057, 11604041, 11704060]

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We experimentally realized a 2D weak topological insulator in spinless Su-Schrieffer-Heeger circuits with parity-time and chiral symmetries. By modulating centrosymmetric circuit deformations, we observed a Dirac semimetal phase and four weak topological insulator phases. Our work provides the first experimental evidence for 2D weak topological insulators and advances our understanding of topological insulators, flat bands, and the features of Dirac cones.
We report the experimental realization of a two-dimensional (2D) weak topological insulator (WTI) in spinless Su-Schrieffer-Heeger circuits with parity-time and chiral symmetries. Strong and weak Z(2) topological indexes are adopted to explain the experimental findings that a Dirac semimetal (DSM) phase and four WTI phases emerge in turn when we modulate the centrosymmetric circuit deformations. In the DSM phase, it is found that the Dirac cone is highly anisotropic and that it is not pinned to any high-symmetry points but can widely move within the Brillouin zone, which eventually leads to the phase transition between WTIs. In addition, we observe a pair of flat-band domain wall states by designing spatially inhomogeneous node connections. Our work provides the first experimental evidence for 2D WTIs, which significantly advances our understanding of the strong and weak nature of topological insulators, the robustness of flat bands, and the itinerant and anisotropic features of Dirac cones.

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