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Replica higher-order topology of Hofstadter butterflies in twisted bilayer graphene

Physics

Replica higher-order topology of Hofstadter butterflies in twisted bilayer graphene

S. Kim, S. Jeon, et al.

This exciting research by Sun-Woo Kim, Sunam Jeon, Moon Jip Park, and Youngkuk Kim reveals the emergence of higher-order topological insulator phases in twisted bilayer graphene, showcasing localized corner states that act as dazzling replicas of original HOTIs. Discover the intriguing self-similarity of the Hofstadter spectrum and the role of flux translational symmetry in shaping these quantum fractals!

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~3 min • Beginner • English
Abstract
The Hofstadter energy spectrum of twisted bilayer graphene (TBG) is found to have recursive higher-order topological properties. We demonstrate that higher-order topological insulator (HOTI) phases, characterized by localized corner states, occur as replicas of the original HOTIs to fulfill the self-similarity of the Hofstadter spectrum. We show the existence of exact flux translational symmetry in TBG at all commensurate angles. Based on this result, we identify that the original HOTI phase at zero flux is re-entrant at a half-flux periodicity, where the effective twofold rotation is preserved. In addition, numerous replicas of the original HOTIs are found for fluxes without protecting symmetries. Like the original HOTIs, replica HOTIs feature both localized corner states and edge-localized real-space topological markers. The replica HOTIs originate from the different interaction scales, namely, intralayer and interlayer couplings, in TBG. The topological aspect of Hofstadter butterflies revealed in our results highlights symmetry-protected topology in quantum fractals.
Publisher
npj Computational Materials
Published On
Aug 22, 2023
Authors
Sun-Woo Kim, Sunam Jeon, Moon Jip Park, Youngkuk Kim
Tags
higher-order topological insulators
twisted bilayer graphene
localized corner states
Hofstadter spectrum
flux translational symmetry
quantum fractals
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