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Floquet engineering of interlayer couplings: Tuning the magic angle of twisted bilayer graphene at the exit of a waveguide

机译:层间联轴器的Floquet工程:在波导出口处调整扭曲的双层石墨烯的魔法角度

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摘要

We introduce an approach that allows one complete control over the modulation of the effective twist angle change in few-layer van der Waals heterostructures by irradiating them with longitudinal waves of light at the end of a waveguide. As a specific application, we consider twisted bilayer graphene and show that one can tune the magic angles to be either larger or smaller, allowing in situ experimental control of the phase diagram of this and other related materials. A waveguide allows one to circumvent the free-space constraints on the absence of longitudinal electric field components of light. We propose to place twisted bilayer graphene at a specific location at the exit of a waveguide, such that it is subjected to purely longitudinal components of a transverse magnetic mode wave.
机译:我们介绍一种方法,可以通过用波导末端的纵向光照射它们来允许一个完全控制在几层范德瓦尔斯异质结构中的有效扭曲角度变化。 作为特定应用,我们考虑扭曲的双层石墨烯,并表明一种人可以调整魔法角度更大或更小,允许原位实验控制该相关材料的相图。 波导允许一个人在没有纵向电场分量的光的情况下绕过自由空间约束。 我们建议将扭曲的双层石墨烯放置在波导的出口处的特定位置,使得它经受横向磁模波的纯度纵向分量。

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