4.8 Article

Effective lifting of the topological protection of quantum spin Hall edge states by edge coupling

Journal

NATURE COMMUNICATIONS
Volume 13, Issue 1, Pages -

Publisher

NATURE PORTFOLIO
DOI: 10.1038/s41467-022-30996-z

Keywords

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Funding

  1. Deutsche Forschungsgemeinschaft (DFG) [390858490]
  2. National Key R&D Program of China [2017YFE0131300]
  3. Sino-German mobility program [M-0006]
  4. University of Wuerzburg
  5. Collaborative Research Center SFB 1170 ToCoTronics [258499086]

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In this study, the authors demonstrate that topological protection can be lifted by pairwise coupling of 2D TI edges in close proximity. This finding opens up new possibilities for active control of topological protection through inter-edge hybridization.
New functionalities of two-dimensional topological insulators (2DTI) are of current scientific interest. Here, the authors show that topological protection can be lifted by pairwise coupling of 2DTI bismuthene edges in close proximity. The scientific interest in two-dimensional topological insulators (2D TIs) is currently shifting from a more fundamental perspective to the exploration and design of novel functionalities. Key concepts for the use of 2D TIs in spintronics are based on the topological protection and spin-momentum locking of their helical edge states. In this study we present experimental evidence that topological protection can be (partially) lifted by pairwise coupling of 2D TI edges in close proximity. Using direct wave function mapping via scanning tunneling microscopy/spectroscopy (STM/STS) we compare isolated and coupled topological edges in the 2D TI bismuthene. The latter situation is realized by natural lattice line defects and reveals distinct quasi-particle interference (QPI) patterns, identified as electronic Fabry-Perot resonator modes. In contrast, free edges show no sign of any single-particle backscattering. These results pave the way for novel device concepts based on active control of topological protection through inter-edge hybridization for, e.g., electronic Fabry-Perot interferometry.

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