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Stacking-dependent topological electronic structures in honeycomb-kagome heterolayers
- Bark, Chan Bin;
- Kim, Hanbyul;
- Pak, Seik;
- Min, Hong-Guk;
- Ahn, Sungkyun;
- ... Park, Moon Jip;
- 외 1명
WEB OF SCIENCE
2SCOPUS
0초록
Heterostructures of stacked two-dimensional lattices have shown great promise for engineering novel material properties. As an archetypal example of such a system, the hexagon-shared honeycomb-kagome lattice has been experimentally synthesized in various material platforms. In this work, we explore three rotationally symmetric variants of the honeycomb-kagome lattice: the hexagonal, triagonal, and biaxial phases. While the triagonal and biaxial phases exhibit trivial insulating and Dirac semimetal band structures, respectively, the hexagonal phase hosts a higher-order topological phase driven by band inversion near the Gamma-point. This highlights a key distinction from the conventional band inversions at the K-point observed in hexagonal homobilayer systems. Furthermore, we demonstrate how the distinct topological properties of these phases result in network band structures within moir & eacute; heterostructures formed by twisted or lattice-mismatched HK systems. These network band structures can be experimentally observed through extrinsic twisting or intrinsic lattice mismatch between the honeycomb and kagome systems.
키워드
- 제목
- Stacking-dependent topological electronic structures in honeycomb-kagome heterolayers
- 저자
- Bark, Chan Bin; Kim, Hanbyul; Pak, Seik; Min, Hong-Guk; Ahn, Sungkyun; Kim, Youngkuk; Park, Moon Jip
- 발행일
- 2025-07
- 유형
- Article
- 저널명
- NPJ 2D MATERIALS AND APPLICATIONS
- 권
- 9
- 호
- 1
- 페이지
- 1 ~ 8