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
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초록

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

Band StructureGeometryHeterojunctionsHoneycomb StructuresTopologyBand InversionBiaxial PhasisElectronic.structureHeterolayersKagome LatticeNovel MaterialsPropertyStackingsSynthesisedTwo-dimensional LatticesLattice Mismatch2-DIMENSIONAL MATERIALSDIRAC CONESLATTICEMONOLAYER
제목
Stacking-dependent topological electronic structures in honeycomb-kagome heterolayers
저자
Bark, Chan BinKim, HanbyulPak, SeikMin, Hong-GukAhn, SungkyunKim, YoungkukPark, Moon Jip
DOI
10.1038/s41699-025-00582-0
발행일
2025-07
유형
Article
저널명
NPJ 2D MATERIALS AND APPLICATIONS
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