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ON MEMS/NEMS BIOSENSOR SENSITIVITY NEAR HALF NATURAL FREQUENCY

机译:半自然频率附近的MEMS / NEMS生物传感器灵敏度

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This paper deals with sensitivity of electrostatically actuated Bio-MEMS/NEMS resonator sensors near half natural frequency for mass detection for applications in medicine and biology. Electrostatic force along with fringe correction and Casimir effect are included in the model. They introduce parametric nonlinear terms in the system. The partial-differential equation of motion of the system is solved by using the method of multiple scales. A direct approach of the problem is then used. Two approximation problems resulting from the direct approach are solved. The phase-amplitude relationship is obtained. Numerical results for uniform electrostatically actuated micro resonator sensors are provided. An additional mass consisting of a film with a thickness of 100 nm (virus size), and a density of 0.43 of the density of the microsensor, has been added to the sensor. The additional mass shifted the amplitude-frequency curve of the sensor to lower frequencies.
机译:本文探讨了接近自然频率一半的静电驱动Bio-MEMS / NEMS谐振器传感器的灵敏度,以用于医学和生物学领域的质量检测。该模型包括静电力以及边缘校正和卡西米尔效应。他们在系统中引入了参数非线性项。通过使用多尺度方法来求解系统的偏微分运动方程。然后使用问题的直接方法。解决了直接方法产生的两个近似问题。获得了相位-幅度关系。提供了均匀静电致动的微谐振器传感器的数值结果。由膜厚为100 nm(病毒大小)和密度为微传感器密度0.43的薄膜组成的附加质量已添加到传感器中。附加质量使传感器的振幅-频率曲线移动到较低的频率。

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