Nonlinear phenomena in nanomechanical resonators: mechanical behaviors and physical limitations

N. Kacem, S. Baguet, S. Hentz, R. Dufour
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引用次数: 27

Abstract

In order to overcome the loss of performances issue when scaling resonant sensors down to NEMS, it proves extremely useful to study the behavior of resonators up to large displacements and hence high nonlinearities. A comprehensive nonlinear multiphysics model based on the Euler-Bernoulli equation which includes both mechanical and electrostatic nonlinearities in the case of a capacitive doubly clamped beam is presented. This purely analytical model captures all the nonlinear phenomena present in NEMS resonators electrostatically actuated including bistability, multistability which can lead to several physical limitations such as noise mixing, frequency stability deterioration as well as dynamic pull-in. Moreover, close-form expressions of the critical amplitudes and pull-in domain initiation amplitude are provided which can potentially serve for NEMS designers as quick design rules.
纳米机械谐振器中的非线性现象:力学行为和物理限制
为了克服将谐振传感器缩小到NEMS时的性能损失问题,研究谐振器的大位移和高非线性的行为是非常有用的。提出了一个基于欧拉-伯努利方程的综合非线性多物理场模型,该模型包含了电容性双箝位梁的力学非线性和静电非线性。这种纯解析模型捕获了静电驱动的NEMS谐振器中存在的所有非线性现象,包括双稳性、多稳性,这些现象可能导致一些物理限制,如噪声混合、频率稳定性恶化以及动态拉入。给出了临界幅值和拉入域起始幅值的近似表达式,可作为NEMS设计人员的快速设计规则。
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来源期刊
Mecanique & Industries
Mecanique & Industries 工程技术-工程:机械
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