Sinner Andreas, Pantaleón Pierre A, Guinea Francisco
IMDEA Nanoscience, Faraday 9, 28049 Madrid, Spain.
Institute of Physics, University of Opole, 45-052 Opole, Poland.
Phys Rev Lett. 2023 Oct 20;131(16):166402. doi: 10.1103/PhysRevLett.131.166402.
We study the effects of strain in moiré systems composed of honeycomb lattices. We elucidate the formation of almost perfect one-dimensional moiré patterns in twisted bilayer systems. The formation of such patterns is a consequence of an interplay between twist and strain which gives rise to a collapse of the reciprocal space unit cell. As a criterion for such collapse we find a simple relation between the two quantities and the material specific Poisson ratio. The induced one-dimensional behavior is characterized by two, usually incommensurate, periodicities. Our results offer explanations for the complex patterns of one-dimensional channels observed in low angle twisted bilayer graphene systems and twisted bilayer dicalcogenides. Our findings can be applied to any hexagonal twisted moiré pattern and can be easily extended to other geometries.
我们研究了由蜂窝晶格组成的莫尔系统中的应变效应。我们阐明了扭曲双层系统中几乎完美的一维莫尔图案的形成。这种图案的形成是扭曲和应变之间相互作用的结果,这种相互作用导致了倒易空间晶胞的坍缩。作为这种坍缩的一个标准,我们发现了这两个量与材料特定泊松比之间的简单关系。诱导的一维行为由两个通常不相称的周期性来表征。我们的结果为在低角度扭曲双层石墨烯系统和扭曲双层二硫属化物中观察到的一维通道的复杂图案提供了解释。我们的发现可以应用于任何六边形扭曲莫尔图案,并且可以很容易地扩展到其他几何形状。