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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Optically Actuated Nanoelectromechanical Oscillators
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Optically Actuated Nanoelectromechanical Oscillators

机译:光致动纳米机电振荡器

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摘要

Excitation of biologically functional micro- and nanomechanical structures using optical fields is a recently emerging arena of research that couples the fields of optics, fluidics, electronics, and mechanics with potential of generating novel chemical and biological sensors. We present experimental and theoretical elucidation of optical excitation of resonant nanoelectromechanical systems (NEMS). The modulated optical fields were coupled directly into the NEMS device layer causing amplified mechanical vibrations. Dynamic detection of vibrational characteristics of nanomechanical resonators, fabricated from low-stress silicon nitride and mono crystalline silicon thin film layers, was accomplished using optical interferrometry. We have analyzed the actuation mechanism using finite element modeling, and we found that the dominant actuation mechanism in close proximity of the clamped end was primarily thermal. In contrast, mechanical traveling waves are attributed as possible excitation mechanisms in the far-field regime.
机译:利用光场激发具有生物功能的微机械和纳米机械结构是一个新兴的研究领域,它将光学,流体,电子学和力学领域与产生新型化学和生物传感器的潜力结合在一起。我们介绍共振纳米机电系统(NEMS)的光激发的实验和理论解释。调制后的光场直接耦合到NEMS器件层中,导致放大的机械振动。使用光学干涉仪可以动态检测由低应力氮化硅和单晶硅薄膜层制成的纳米机械谐振器的振动特性。我们使用有限元建模分析了驱动机制,我们发现紧靠夹紧端的主要驱动机制主要是热力。相反,在远场状态下,机械行波被认为是可能的激发机制。

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