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Electrically controlled infrared optical transmission and reflection through metallic grating using NEMS technology

机译:使用NEMS技术通过金属光栅进行电控红外光学传输和反射

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摘要

The enhanced optical properties of metallic subwavelength gratings with very narrow slits have recently been extensively studied in the field of plasmonics. The optical transmission and reflection of such nanostractures, which act as nano-electro-mechanical systems (NEMS) actuators, can be electrically controlled by varying their geometrical parameters, giving them great flexibility for numerous applications in photonics, opto-electronics, and sensing. The previous challenges in controlling the optical properties were overcome by forming a metallic subwavelength grating with an NEMS actuator in mid-air, allowing the grating to be physically moved with the bias voltage. The device can shift the plasmon resonance wavelength with an electrical signal. The resonance wavelength for Wood's anomaly at the infrared region is predicted through simulations to shift by approximately 150 nm. We discuss the effect of polarization on the optical properties and grating mechanism. The reported effect may be used to achieve active spectral tuning and switching in a wide range of applications.
机译:近来,在等离子技术领域已经广泛研究了具有非常窄的狭缝的金属亚波长光栅的增强的光学特性。可以通过改变其几何参数来电气控制此类纳米结构的光学传输和反射,这些纳米结构用作纳米机电系统(NEMS)致动器,从而为在光子,光电和传感领域的众多应用提供了极大的灵活性。通过在空中用NEMS致动器形成金属亚波长光栅,克服了控制光学特性的先前难题,允许光栅随偏置电压物理移动。该设备可以通过电信号改变等离激元共振波长。通过模拟预测了伍德异常在红外区域的共振波长,将偏移约150 nm。我们讨论了偏振对光学特性和光栅机理的影响。报告的效果可用于在广泛的应用中实现主动频谱调谐和切换。

著录项

  • 来源
    《Applied Physics》 |2015年第4期|1353-1357|共5页
  • 作者单位

    Department of Advanced Materials Science, Faculty of Engineering, Kagawa University, 2217-20 Hayashi-cho, Takamatsu, Kagawa 761-0396, Japan;

    Department of Electronics and Mechanics, Toba National College of Maritime Technology, 1-1 Ikegami-cho, Toba, Mie 517-8501, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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