论文标题

加压超薄膜的动力学

Dynamics of pressurized ultra-thin membranes

论文作者

Sarafraz, Ali, Givois, Arthur, Roslon, Irek, Liu, Hanqing, Brahmi, Hatem, Verbiest, Gerard, Steeneken, Peter G., Alijani, Farbod

论文摘要

超薄分层二维(2D)材料的共振频率随着周围气体的压力引起的张力而非线性变化。尽管已经广泛探索了加压2D材料膜的动力学,但最近的实验观察结果显示出与分析预测的显着偏差。在这里,我们提出了一种多模式连续方法,以捕获经历大偏转的预张膜的非线性压频响应。我们使用在多元鼓激击中进行的实验验证模型,并在周围培养基中遭受压力变化。我们证明,考虑压力对膜张力的影响不足以确定共振频率。实际上,必须考虑加压配置,中间拉伸以及较高模式对模式形状的贡献的膜形状的变化。最后,我们展示了如何使用提出的高频机械表征方法来确定Young的超薄膜的模量。

The resonance frequency of ultra-thin layered two-dimensional (2D) materials changes nonlinearly with the tension induced by the pressure from the surrounding gas. Although the dynamics of pressurized 2D material membranes have been extensively explored, recent experimental observations show significant deviations from analytical predictions. Here, we present a multi-mode continuum approach to capture the nonlinear pressure-frequency response of pre-tensioned membranes undergoing large deflections. We validate the model using experiments conducted on polysilicon drums excited opto-thermally and subjected to pressure changes in the surrounding medium. We demonstrate that considering the effect of pressure on the membrane tension is not sufficient for determining the resonance frequencies. In fact, it is essential to also account for the change in the membrane's shape in the pressurized configuration, the mid-plane stretching, and the contributions of higher modes to the mode shapes. Finally, we show how the presented high-frequency mechanical characterization method can be used to determine Young's modulus of ultra-thin membranes.

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