arXiv · 2007.11706
Creation of moir\'e bands in a monolayer semiconductor by spatially periodic dielectric screening
Abstract
Moir\'e superlattices of two-dimensional van der Waals materials have emerged as a powerful platform for designing electronic band structures and discovering emergent physical phenomena. A key concept involves the creation of long-wavelength periodic potential and moir\'e bands in a crystal through interlayer hybridization when two materials are overlaid. Here we demonstrate a new approach based on spatially periodic dielectric screening to create moir\'e bands in a monolayer semiconductor. It relies on reduced dielectric screening of the Coulomb interactions in monolayer semiconductors and their environmental dielectric-dependent electronic band structure. We observe optical transitions between moir\'e bands in monolayer WSe$_{2}$ when it is placed close to small angle-misaligned graphene on hexagonal boron nitride. The moir\'e bands are a result of long-range Coulomb interactions, strongly gate-tunable, and can have versatile superlattice symmetries independent of the crystal lattice of the host material. Our result also demonstrates that monolayer semiconductors are sensitive local dielectric sensors.
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Yang Xu, Connor Horn, Jiacheng Zhu, Yanhao Tang, Liguo Ma, Lizhong Li, Song Liu, Kenji Watanabe, Takashi Taniguchi, James C. Hone, Jie Shan, Kin Fai Mak. 2020-07-22. Creation of moir\'e bands in a monolayer semiconductor by spatially periodic dielectric screening. https://doi.org/10.1038/s41563-020-00888-y
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