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Soliton superlattices in twisted hexagonal boron nitride

机译:六方氮化硼扭曲的孤子超晶格

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摘要

Properties of atomic van der Waals heterostructures are profoundly influenced by interlayer coupling, which critically depends on stacking of the proximal layers. Rotational misalignment or lattice mismatch of the layers gives rise to a periodic modulation of the stacking, the moiré superlattice. Provided the superlattice period extends over many unit cells, the coupled layers undergo lattice relaxation, leading to the concentration of strain at line defects – solitons - separating large area commensurate domains. We visualize such long-range periodic superstructures in thin crystals of hexagonal boron nitride using atomic-force microscopy and nano-infrared spectroscopy. The solitons form sub-surface hexagonal networks with periods of a few hundred nanometers. We analyze the topography and infrared contrast of these networks to obtain spatial distribution of local strain and its effect on the infrared-active phonons of hBN.
机译:范德华原子异质结构的性质受层间耦合的影响,层间耦合主要取决于近端层的堆叠。层的旋转未对准或晶格失配引起堆叠物(莫尔超晶格)的周期性调制。如果超晶格周期延伸到许多晶胞上,则耦合层将经历晶格弛豫,从而导致应变集中在线缺陷(孤子)上,从而将大面积的相应区域分开。我们使用原子力显微镜和纳米红外光谱技术可视化六方氮化硼薄晶体中的此类长周期周期性超结构。孤子形成周期为几百纳米的亚表面六边形网络。我们分析这些网络的地形和红外对比度,以获得局部应变的空间分布及其对hBN红外活性声子的影响。

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