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Guided Mode Resonance Transmission Filters Working at the Intersection Region of the First and Second Leaky Modes

机译:引导模式共振传输滤波器在第一和第二泄漏模式的相交区域工作

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摘要

Based on the guided mode resonance effect, single-layer transmission filters are presented. It is found that there is an intersection region in which the strong modulation waveguide modes TE0 and TE2 can be simultaneously excited by the second and first diffraction orders, respectively. A very high transmission peak emerges when the leaky modes interact with each other. Based on the normalized eigen-function of a single-layer waveguide grating, the high resonance transmission filters can be designed at any central wavelength. In order to demonstrate this concept, we design narrow line-shaped band pass filters with a central wavelength at 0.8, 1.06 and 10.6 μm.%Based on the guided mode resonance effect,single-layer transmission filters are presented.It is found that there is an intersection region in which the strong modulation waveguide modes TE0 and TE2 can be simultaneously excited by the second and first diffraction orders,respectively.A very high transmission peak emerges when the leaky modes interact with each other.Based on the normalized eigen-function of a single-layer waveguide grating,the high resonance transmission filters can be designed at any central wavelength.In order to demonstrate this concept,we design narrow line-shaped band pass filters with a central wavelength at 0.8,1.06 and 10.6μm.
机译:基于引导模式谐振效果,提出了单层传输滤波器。发现存在一个交叉区,其中强调制波导模式TE0和TE2分别可以通过第二和第一衍射顺序同时发生。当泄漏模式彼此相互作用时,出现了一个非常高的传输峰值。基于单层波导光栅的归一化eIGen函数,可以在任何中心波长处设计高谐振透射滤波器。为了演示这一概念,我们设计了窄线形带通滤波器,中心波长为0.8,1.06和10.6μm。基于引导模式共振效果,呈现单层传输滤波器。发现有是一个交叉区,其中强制调制波导模式TE0和TE2可以同时由第二和第一衍射令同时发生。当泄漏模式彼此相互作用时出现非常高的传输峰值。基于归一化的EIGEN函数。在单层波导光栅中,高谐振透射滤光器可以在任何中央波长下设计。为了证明这一概念,我们设计窄线形带通滤波器,中央波长为0.8,1.06和10.6μm。

著录项

  • 来源
    《中国物理快报:英文版》 |2012年第2期|214-216|共3页
  • 作者

    MA Jian-Yong; FAN Yong-Tao;

  • 作者单位

    Shanghai Institute of Fine Mechanics and Optics, Chinese Academy of Sciences, Shanghai 201800;

    Shanghai Institute of Fine Mechanics and Optics, Chinese Academy of Sciences, Shanghai 201800;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 chi
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