论文标题

通过弯曲编程在2D材料中编程Moiré图案

Programming moiré patterns in 2D materials by bending

论文作者

Kapfer, Mäelle, Jessen, Bjarke S., Eisele, Megan E., Fu, Matthew, Danielsen, Dorte R., Darlington, Thomas P., Moore, Samuel L., Finney, Nathan R., Marchese, Ariane, Hsieh, Valerie, Majchrzak, Paulina, Jiang, Zhihao, Biswas, Deepnarayan, Dudin, Pavel, Avila, José, Watanabe, Kenji, Taniguchi, Takashi, Ulstrup, Søren, Bøggild, Peter, Schuck, P. J., Basov, Dmitri N., Hone, James, Dean, Cory R.

论文摘要

扭曲的二维材料中的Moiré超级晶格引起了极大的兴奋,作为实现按需实现量子特性的平台。但是,Moiré模式对层间原子注册表高度敏感,并且当前的组装技术不精确地控制平均扭曲角度,局部扭曲角度的空间不均匀性以及由于随机应变而导致的变形。在这里,我们使用原子力显微镜的尖端通过单层丝带的平面内弯曲来展示一种通过平面内弯曲来操纵杂物和同性恋者中的莫伊尔图案的新方法。该技术具有改善的扭曲角均匀性并减少随机应变的连续变化,从而导致具有高度可调波长和超低疾病的莫伊尔模式。我们的结果为对超低疾病莫伊尔系统的详细研究和精确应变工程设备的实现铺平了道路。

Moiré superlattices in twisted two-dimensional materials have generated tremendous excitement as a platform for achieving quantum properties on demand. However, the moiré pattern is highly sensitive to the interlayer atomic registry, and current assembly techniques suffer from imprecise control of the average twist angle, spatial inhomogeneity in the local twist angle, and distortions due to random strain. Here, we demonstrate a new way to manipulate the moiré patterns in hetero- and homo-bilayers through in-plane bending of monolayer ribbons, using the tip of an atomic force microscope. This technique achieves continuous variation of twist angles with improved twist-angle homogeneity and reduced random strain, resulting in moiré patterns with highly tunable wavelength and ultra-low disorder. Our results pave the way for detailed studies of ultra-low disorder moiré systems and the realization of precise strain-engineered devices.

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