论文标题
通过空间周期性介电筛选在单层半导体中创建Moiré乐队
Creation of moiré bands in a monolayer semiconductor by spatially periodic dielectric screening
论文作者
论文摘要
二维范德华材料的Moiré超晶格已经成为设计电子带结构并发现新兴物理现象的强大平台。一个关键概念涉及在两种材料被覆盖时通过层间杂交在晶体中产生长波长的周期势和莫伊尔带。在这里,我们演示了一种基于空间周期性介电筛选的新方法,以在单层半导体中创建Moiré频段。它依赖于单层半导体中库仑相互作用及其环境介电依赖性电子带结构的介电筛选。当单层WSE $ _ {2} $接近六角形硝化硼的小角度 - 隔离石墨烯时,我们观察到单层WSE $ _ {2} $之间的Moiré频段之间的光学转变。 Moiré乐队是远程库仑相互作用的结果,该库仑相互作用强烈,并且可以具有独立于宿主材料的晶体晶格的多功能超晶格对称性。我们的结果还表明,单层半导体是敏感的局部介电传感器。
Moiré superlattices of two-dimensional van der Waals materials have emerged as a powerful platform for designing electronic band structures and discovering emergent physical phenomena. A key concept involves the creation of long-wavelength periodic potential and moiré bands in a crystal through interlayer hybridization when two materials are overlaid. Here we demonstrate a new approach based on spatially periodic dielectric screening to create moiré bands in a monolayer semiconductor. It relies on reduced dielectric screening of the Coulomb interactions in monolayer semiconductors and their environmental dielectric-dependent electronic band structure. We observe optical transitions between moiré bands in monolayer WSe$_{2}$ when it is placed close to small angle-misaligned graphene on hexagonal boron nitride. The moiré 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.