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New Generation of Moiré Superlattices in DoublyAligned hBN/Graphene/hBN Heterostructures

机译:新一代的莫尔超晶格对齐的hBN /石墨烯/ hBN异质结构

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摘要

The specific rotational alignment of two-dimensional lattices results in a moiré superlattice with a larger period than the original lattices and allows one to engineer the electronic band structure of such materials. So far, transport signatures of such superlattices have been reported for graphene/hBN and graphene/graphene systems. Here we report moiré superlattices in fully hBN encapsulated graphene with both the top and the bottom hBN aligned to the graphene. In the graphene, two different moiré superlattices form with the top and the bottom hBN, respectively. The overlay of the two superlattices can result in a third superlattice with a period larger than the maximum period (14 nm) in the graphene/hBN system, which we explain in a simple model. This new type of band structure engineering allows one to artificially create an even wider spectrum of electronic properties in two-dimensional materials.
机译:二维晶格的特定旋转对齐会导致莫尔超晶格的周期比原始晶格大,并且允许人们设计此类材料的电子能带结构。迄今为止,已经报道了对于石墨烯/ hBN和石墨烯/石墨烯系统的这种超晶格的传输特征。在这里,我们报道了完全hBN封装的石墨烯中的莫尔超晶格,顶部和底部hBN均与石墨烯对齐。在石墨烯中,顶部hBN和底部hBN分别形成两个不同的莫尔超晶格。两个超晶格的覆盖可以形成第三超晶格,其周期大于石墨烯/ hBN系统中的最大周期(14 nm),我们将在一个简单模型中进行解释。这种新型的带结构工程使人们可以在二维材料中人为地创建更宽广的电子特性谱。

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