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横向可变形纳米机械零阶光栅:通过严格耦合波分析研究反常衍射

Laterally deformable nanomechanical zeroth-order gratings: anomalous diffraction studied by rigorous coupled-wave analysis.

作者信息

Carr Dustin W, Sullivan J P, Friedmann T A

机构信息

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

出版信息

Opt Lett. 2003 Sep 15;28(18):1636-8. doi: 10.1364/ol.28.001636.

Abstract

We describe a novel optomechanical device that produces strong reflectance and polarization modulation of incident light. The structure is based on a suspended nanomechanical grating with lateral deformability, and rigorous coupled-wave analysis has been used to fully model the optical properties of the device. The grating consists of two interdigitated gratings that may be moved with respect to each other with an applied force. The structures proposed here are designed to be readily manufacturable with device processing developed for surface-micromachined microelectromechanical systems and with known microelectromechanical systems materials, such as silicon, silicon nitride, and amorphous diamond. As the spacing of the grating is changed, an anomalous diffraction effect is observed, a Wood's type anomaly in which there exists a resonance in propagating leaky modes within the grating, resulting in a dramatic change in the reflectance characteristics for slight changes in the grating. One of the unique features of this structure is that a reflected optical signal can be used to detect subangstrom in-plane motion of structures greater than 10 nm.

摘要

我们描述了一种新型光机械装置,它能对入射光产生强烈的反射率和偏振调制。该结构基于具有横向可变形性的悬浮纳米机械光栅,并且已使用严格耦合波分析对该装置的光学特性进行了全面建模。光栅由两个相互交叉的光栅组成,通过施加力可使其相对移动。这里提出的结构设计为可利用为表面微机械加工微机电系统开发的器件工艺以及诸如硅、氮化硅和非晶金刚石等已知的微机电系统材料轻松制造。随着光栅间距的变化,会观察到一种异常衍射效应,即伍德型异常,其中光栅内传播的泄漏模式存在共振,导致光栅稍有变化时反射特性就会发生显著变化。这种结构的独特特性之一是,反射光信号可用于检测大于10纳米结构的亚埃级面内运动。

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