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纳米加工带孔微悬臂梁的共振行为

Resonating Behaviour of Nanomachined Holed Microcantilevers.

作者信息

Canavese Giancarlo, Ricci Alessandro, Gazzadi Gian Carlo, Ferrante Ivan, Mura Andrea, Marasso Simone Luigi, Ricciardi Carlo

机构信息

Applied Science and Technology Department, Politecnico di Torino, Torino 10129, Italy.

S3 Center, Nanoscience Institute - CNR, Modena 41125, Italy.

出版信息

Sci Rep. 2015 Dec 8;5:17837. doi: 10.1038/srep17837.

Abstract

The nanofabrication of a nanomachined holed structure localized on the free end of a microcantilever is here presented, as a new tool to design micro-resonators with enhanced mass sensitivity. The proposed method allows both for the reduction of the sensor oscillating mass and the increment of the resonance frequency, without decreasing the active surface of the device. A theoretical analysis based on the Rayleigh method was developed to predict resonance frequency, effective mass, and effective stiffness of nanomachined holed microresonators. Analytical results were checked by Finite Element simulations, confirming an increase of the theoretical mass sensitivity up to 250%, without altering other figures of merit. The nanomachined holed resonators were vibrationally characterized, and their Q-factor resulted comparable with solid microcantilevers with same planar dimensions.

摘要

本文展示了一种纳米加工带孔结构的制备方法,该结构位于微悬臂梁的自由端,是一种设计具有增强质量灵敏度的微谐振器的新工具。所提出的方法既能减少传感器的振荡质量,又能提高共振频率,同时不减小器件的有效表面积。基于瑞利方法开展了理论分析,以预测纳米加工带孔微谐振器的共振频率、有效质量和有效刚度。通过有限元模拟对分析结果进行了验证,结果表明理论质量灵敏度提高了250%,而其他品质因数未受影响。对纳米加工带孔谐振器进行了振动特性表征,其品质因数与具有相同平面尺寸的实心微悬臂梁相当。

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