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首页> 外文期刊>Applied Physics Letters >Electrical transduction in nanomechanical resonators based on doubly clamped bottom-up silicon nanowires
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Electrical transduction in nanomechanical resonators based on doubly clamped bottom-up silicon nanowires

机译:基于双钳位自下而上硅纳米线的纳米机械谐振器中的电传导

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摘要

The frequency response of double-clamped bottom-up grown silicon nanowires is measured electrically by means of a frequency modulation (FM) detection scheme. In comparison with other electrical methods, FM detection is simpler and it allows the use of smaller actuation signals. We have been able to resolve the first three mechanical resonance modes up to frequencies higher than 350 MHz. The FM detection scheme relies on a transduction mechanism that presents a linear dependence of the change of conductance with the nanowire deflection/actuation signal. The modeling of the system corroborates that two different transduction mechanisms (linear and quadratic) co-exist.
机译:借助频率调制(FM)检测方案,对从底部向上生长的双钳位硅纳米线的频率响应进行了电测量。与其他电气方法相比,FM检测更为简单,并且可以使用较小的致动信号。我们已经能够解决高达350 MHz以上频率的前三个机械共振模式。 FM检测方案依赖于一种传导机制,该机制呈现出电导率变化与纳米线偏转/驱动信号的线性相关性。系统建模证实了两种不同的转导机制(线性和二次)共存。

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