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Single and mechanically coupled capacitive silicon nanomechanical resonators

机译:机械耦合的电容式硅纳米机械谐振器

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摘要

The design, fabrication and evaluation of single and mechanically coupled capacitive silicon nanomechanical resonators is reported. The structure of resonators is fabricated on a silicon on insulator wafer and transferred to a Tempax glass substrate by anodic bonding. A finite element method simulation has been conducted to investigate the vibration modes of the resonators. Single beam resonator with a length of 21.3 μm, a width of 500 nm, a thickness of 5 μm and the capacitive gap size of about 300 nm shows a nonlinear response. The amplitude of frequency response increases as the frequency is swept upward, and then suddenly jumps to a lower value. The mechanically coupled capacitive silicon nanomechanical resonator with a number of 100 individual beams above is successfully fabricated. Some resonant peaks can be observed, which shows that most nanomechanical resonators are mechanically coupled and synchronised. A mechanical resonance at a high frequency of ~7.2 MHz in flexural mode has been detected. A small motional resistance of 1.2 kΩ has been achieved by the mechanical coupling.
机译:报告了单个和机械耦合的电容式硅纳米机械谐振器的设计,制造和评估。谐振器的结构制造在绝缘体上的硅上,并通过阳极键合转移到Tempax玻璃基板上。已经进行了有限元方法模拟以研究谐振器的振动模式。长度为21.3μm,宽度为500 nm,厚度为5μm,电容间隙尺寸约为300 nm的单束谐振器显示出非线性响应。频率响应的幅度随着频率向上扫描而增加,然后突然跳到一个较低的值。成功地制造了具有以上100条单独光束的机械耦合电容式硅纳米机械谐振器。可以观察到一些共振峰,这表明大多数纳米机械共振器是机械耦合和同步的。在弯曲模式下已检测到〜7.2 MHz的高频机械共振。通过机械耦合实现了1.2kΩ的小运动电阻。

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