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横向可变形光学纳米机电系统光栅换能器的实验演示。

Experimental demonstration of a laterally deformable optical nanoelectromechanical system grating transducer.

作者信息

Keeler Bianca E N, Carr Dustin W, Sullivan John P, Friedmann Thomas A, Wendt Joel R

机构信息

Sandia National Laboratories, Albuquerque, New Mexico 87185, USA.

出版信息

Opt Lett. 2004 Jun 1;29(11):1182-4. doi: 10.1364/ol.29.001182.

Abstract

We experimentally demonstrate operation of a laterally deformable optical nanoelectromechanical system grating transducer. The device is fabricated in amorphous diamond with standard lithographic techniques. For small changes in the spacing of the subwavelength grating elements, lossy propagating resonant modes in the plane of the grating cause a large change in the optical reflection amplitude. An in-plane motion detection sensitivity of 160 fm/square root(Hz) was measured, exceeding that of any other optical microelectromechanical system transducer to our knowledge. Calculations predict that this sensitivity could be improved to better than 40 fm/square root(Hz) in future designs. In addition to having applications in the field of inertial sensors, this device could also be used as an optical modulator.

摘要

我们通过实验证明了一种横向可变形光学纳米机电系统光栅换能器的运行情况。该器件采用标准光刻技术在非晶金刚石中制造。对于亚波长光栅元件间距的微小变化,光栅平面内的有损传播共振模式会导致光反射幅度发生很大变化。测量得到的面内运动检测灵敏度为160 fm/√Hz,据我们所知,超过了任何其他光学微机电系统换能器。计算预测,在未来的设计中,这种灵敏度可以提高到优于40 fm/√Hz。除了在惯性传感器领域有应用外,该器件还可以用作光调制器。

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