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CASIMIR EFFECT ON FREQUENCY RESPONSE OF SUPERHARMONIC RESONANCE OF NEMS RESONATORS

机译:网元谐振器超高谐振谐振频率响应的Casimir效应

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This paper investigates the frequency response of superharmonic resonance of the second order of electrostatically actuated nano-electro-mechanical system (NEMS) resonator sensor. The structure of the MEMS device is a resonator cantilever over a ground plate under Alternating Current (AC) voltage. Superharmonic resonance insinuates that the AC voltage is operating in a frequency near one-fourth the natural frequency of the resonator. The forces acting on the system are electrostatic, damping and Casimir force. For the electrostatic force, the AC voltage is in the category of hard excitation in order to induce a bifurcation phenomenon. For Casimir forces to affect the system, the gap distance between the cantilever resonator and base plate is in the range of 20 nm to 1 μm. The differential equation of motion is converted to dimensionless by choosing the gap as reference length for deflections, the length of the resonator for the axial coordinate, and reference time based on the characteristics of the structure. The Method of Multiple Scales (MMS) is used to model the characteristic of the system. MMS transforms the nonlinear partial differential equation of motion into two simpler problems, namely zero-order and first-order. The influences of parameters (i.e. Casimir, damping, second voltage and fringe) were also investigated.
机译:本文研究了静电纳米电力机械系统(NEMS)谐振器传感器的二阶超声共振的频率响应。 MEMS器件的结构是在交流(AC)电压下的接地板上的谐振器悬臂。超高臂共振暗示AC电压在谐振器的自然频率附近的频率下运行。作用于该系统的力是静电,阻尼和卡西米的力。对于静电力,AC电压是硬刺激的类别,以诱导分叉现象。对于基本米尔力来影响系统,悬臂谐振器和基板之间的间隙距离在20nm至1μm的范围内。通过将间隙选择为参考长度作为偏转的参考长度,用于轴向坐标的谐振器的长度,以及基于结构特性的参考时间,通过选择间隙来转换为无量纲。多个尺度(MMS)的方法用于模拟系统的特性。 MMS将非线性部分微分方程转换为两个更简单的问题,即零级和一阶。还研究了参数的影响(即卡西米尔,阻尼,第二电压和边缘)。

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