A study on color-tunable MEMS device based on plasmon photonics

Taelim Lee, A. Higo, H. Fujita, Y. Nakano, H. Toshiyoshi
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引用次数: 9

Abstract

Oscillation of electrons on the metal surface makes surface plasmon polariton, which works as a guide for the waveguide when an array of holes is perforated on the metal surface. From its plasmonic properties, that kind of structure has a wavelength filtering property. Focusing on this filter characteristic, we have designed a novel MEMS tunable filter based on plasmon photonics. The idea is to make line and space structures and to put one on another vertically such that one would change the gap to control the wavelength filtering effect. By using this structure, we would electromechanically control the surface plasmon. As a preliminary research, we obtained optical properties of line-and-space structures that are crossed, by using the FDTD simulator.
基于等离子体光子学的颜色可调MEMS器件研究
电子在金属表面的振荡产生表面等离子体激元,当金属表面穿孔阵列时,表面等离子体激元对波导起导向作用。从其等离子体特性来看,这种结构具有波长滤波特性。针对这种滤波特性,我们设计了一种新型的基于等离子体光子的MEMS可调谐滤波器。这个想法是制作线条和空间结构,并把它们垂直地放在另一个上面,这样就可以改变间隙来控制波长过滤效果。通过使用这种结构,我们可以机电控制表面等离子体。作为初步研究,我们利用时域有限差分模拟器获得了线空交叉结构的光学特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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