Moiré-modulated band gap and van Hove singularities in twisted bilayer germanene

Author:

Bampoulis PantelisORCID,Castenmiller CarolienORCID,Klaassen Dennis JORCID,V Mil Jelle,de Boeij Paul L,Ezawa MotohikoORCID,Zandvliet Harold J WORCID

Abstract

Abstract Twisting bilayers of two-dimensional topological insulators has the potential to create unique quantum states of matter. Here, we successfully synthesized a twisted bilayer of germanene on Ge2Pt(101) with a 21.8° twist angle, corresponding to a commensurate (√7×√7) structure. Using scanning tunneling microscopy and spectroscopy, we unraveled the structural and electronic properties of this configuration, revealing a moiré-modulated band gap and a well-defined edge state. This band gap opens at AB/BA stacked sites and closes at AA stacked sites, a phenomenon attributed to the electric field induced by the scanning tunneling microscopy tip. Our study further revealed two van Hove singularities at −0.8 eV and +1.04 eV, resulting in a Fermi velocity of (8 ± 1) × 105 m s−1. Our tight-binding results uncover a unique quantum state, where the topological properties could be regulated through an electric field, potentially triggering two topological phase transitions.

Funder

NWO

MEXT KAKENHI

CREST, JST

Publisher

IOP Publishing

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. The renaissance of germanium;Surface Science;2024-10

2. Tunability of topological edge states in germanene at room temperature;Journal of Materials Chemistry C;2024

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