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Light-induced optomechanical forces in graphene waveguides

机译:石墨烯波导中的光致光机械力

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We show that the electromagnetic forces generated by the excitations of a mode in graphene-based optomechanical systems are highly tunable by varying the graphene chemical potential, and orders of magnitude stronger than usual non-graphene-based devices, in both attractive and repulsive regimes. We analyze coupled waveguides made of two parallel graphene sheets, either suspended or supported by dielectric slabs, and study the interplay between the light-induced force and the Casimir-Lifshitz interaction. These findings pave the way to advanced possibilities of control and fast modulation for optomechanical devices and sensors at the nano- and microscales.
机译:我们表明,在吸引和排斥的情况下,通过改变石墨烯的化学势,在基于石墨烯的光机械系统中由模式激发产生的电磁力是高度可调的,并且比普通的非基于石墨烯的设备强几个数量级。我们分析了由两个平行的石墨烯片制成的耦合波导,这些石墨烯片被电介质平板悬挂或支撑,并研究了光致作用力与卡西米尔-利夫希茨相互作用之间的相互作用。这些发现为纳米级和微米级的光机械设备和传感器的控制和快速调制的高级可能性铺平了道路。

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