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SURFACE PLASMONIC RESONANCE MODULATION BY MEMS-ELASTOMER HYBRID SYSTEM

机译:MEMS-ELASTOMER混合系统的表面等离子体共振调制

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A hybrid system consisting of a driving mechanism in the form of a microelectromechanical system (MEMS), and a tunable surface plasmonic resonance (SPR) from a deformable elastomer with nanostructures is proposed and evaluated in this work. The MEMS isotropically stretches and expands the elastomer film, which in turn moves the integrated SPR nanostructures into controllable positions, resulting in different SPRs. Under various MEMS operating conditions, arbitrary electromagnetic (EM) responses can be modulated from a single SPR design. The system sequentially filtering white light to various outgoing spectra by the proposed tunable SPR is a possible method for EM modulation. Theoretical design, numerical simulation, and analysis were comprehensively conducted to support the proposed system.
机译:提出了一种混合系统,其由微机电系统(MEMS)形式的驱动机构以及来自具有纳米结构的可变形弹性体的可调谐表面等离子体共振(SPR),并在该工作中评估。 MEMS各向同性地拉伸并膨胀弹性体膜,其又将集成的SPR纳米结构移动到可控位置,导致不同的SPR。在各种MEMS操作条件下,可以从单个SPR设计调制任意电磁(EM)响应。该系统通过所提出的调节SPR顺序地将白光滤波到各种输出光谱是EM调制的可能方法。全面地进行了理论设计,数值模拟和分析,以支持所提出的系统。

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