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Nonlinear mode coupling and internal resonances in MoS2 nanoelectromechanical system

机译:MoS2纳米机电系统中的非线性模式耦合和内部共振

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摘要

Atomically thin two dimensional (2D) layered materials have emerged as a new class of material for nanoelectromechanical systems (NEMS) due to their extraordinary mechanical properties and ultralow mass density. Among them, graphene has been the material of choice for nanomechanical resonator. However, recent interest in 2D chalcogenide compounds has also spurred research in using materials such as MoS2 for the NEMS applications. As the dimensions of devices fabricated using these materials shrink down to atomically thin membrane, strain and nonlinear effects have become important. A clear understanding of the nonlinear effects and the ability to manipulate them is essential for next generation sensors. Here, we report on all electrical actuation and detection of few-layer MoS2 resonator. The ability to electrically detect multiple modes and actuate the modes deep into the nonlinear regime enables us to probe the nonlinear coupling between various vibrational modes. The modal coupling in our device is strong enough to detect three distinct internal resonances. (C) 2015 AIP Publishing LLC.
机译:原子薄的二维(2D)层状材料由于其非凡的机械性能和超低的质量密度而成为一种新型的纳米机电系统(NEMS)材料。其中,石墨烯已成为纳米机械谐振器的首选材料。但是,最近对2D硫族化物化合物的兴趣也刺激了将MoS2等材料用于NEMS应用的研究。随着使用这些材料制造的器件的尺寸缩小到原子薄的膜,应变和非线性效应变得很重要。清楚地了解非线性效应及其操纵能力对于下一代传感器至关重要。在这里,我们报告了几层MoS2谐振器的所有电驱动和检测。电检测多种模式并激活模式进入非线性状态的能力使我们能够探究各种振动模式之间的非线性耦合。我们设备中的模态耦合强度足以检测三个不同的内部共振。 (C)2015 AIP Publishing LLC。

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