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Nonlinear vibration behavior of graphene resonators and their applications in sensitive mass detection

机译:石墨烯谐振器的非线性振动行为及其在敏感质量检测中的应用

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摘要

Graphene has received significant attention due to its excellent mechanical properties, which has resulted in the emergence of graphene-based nano-electro-mechanical system such as nanoresonators. The nonlinear vibration of a graphene resonator and its application to mass sensing (based on nonlinear oscillation) have been poorly studied, although a graphene resonator is able to easily reach the nonlinear vibration. In this work, we have studied the nonlinear vibration of a graphene resonator driven by a geometric nonlinear effect due to an edge-clamped boundary condition using a continuum elastic model such as a plate model. We have shown that an in-plane tension can play a role in modulating the nonlinearity of a resonance for a graphene. It has been found that the detection sensitivity of a graphene resonator can be improved by using nonlinear vibration induced by an actuation force-driven geometric nonlinear effect. It is also shown that an in-plane tension can control the detection sensitivity of a graphene resonator that operates both harmonic and nonlinear oscillation regimes. Our study suggests the design principles of a graphene resonator as a mass sensor for developing a novel detection scheme using graphene-based nonlinear oscillators.
机译:石墨烯由于其优异的机械性能而受到了广泛的关注,这导致了诸如纳米谐振器之类的基于石墨烯的纳米机电系统的出现。尽管石墨烯谐振器能够轻松达到非线性振动,但对石墨烯谐振器的非线性振动及其在质量传感(基于非线性振荡)中的应用的研究很少。在这项工作中,我们使用诸如平板模型之类的连续弹性模型研究了石墨烯谐振器的非线性振动,该振动是由于边缘夹持边界条件而受到几何非线性效应驱动的。我们已经表明,面内张力可以在调节石墨烯共振的非线性中发挥作用。已经发现,通过使用由驱动力驱动的几何非线性效应引起的非线性振动,可以提高石墨烯谐振器的检测灵敏度。还显示,面内张力可以控制同时运行谐波和非线性振荡机制的石墨烯谐振器的检测灵敏度。我们的研究建议使用石墨烯谐振器作为质量传感器的设计原理,以开发使用基于石墨烯的非线性振荡器的新型检测方案。

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