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Influence of nonlinear intermolecular forces on the harmonic behavior of NEM resonators

机译:非线性分子间力对NEM谐振器谐波特性的影响

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This paper investigates the nonlinear effects introduced by the intermolecular forces on the static and harmonic behavior of electrostatically transduced nano-electromechanical (NEM) resonators using a lumped parameter model. We compute the pull-in parameters and study the full impact of the intermolecular forces on the spring softening effect, computing the non-linear terms using a Taylor expansion. We look at the impact on the resonance frequency and the maximum linear vibration amplitude of NEM resonators. From the set of case studies, we find that the non-linear intermolecular forces can have large effects on low stiffness structures. In particular, we report on a doubly clamped beam (DCB) resonator for which the intermolecular nonlinearity is expected to produce a 1% frequency shift and a 33% reduction in the maximum linear vibration amplitude.
机译:本文使用集总参数模型研究分子间作用力对静电感应纳米机电(NEM)谐振器的静态和谐波行为产生的非线性影响。我们计算引入参数,并研究分子间力对弹簧软化效果的全部影响,并使用泰勒展开来计算非线性项。我们来看对NEM谐振器的谐振频率和最大线性振动幅度的影响。从一组案例研究中,我们发现非线性分子间力会对低刚度结构产生较大影响。特别是,我们报道了一种双钳位束(DCB)谐振器,其分子间非线性有望产生1%的频移和最大线性振动幅度的33%减小。

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