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Guided -mode resonance reflection and transmission filters in the optical and microwave spectral ranges.

机译:光学和微波光谱范围内的导模共振反射和透射滤光片。

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摘要

In this dissertation, new reflection and transmission filters are developed and characterized in the optical and microwave spectral regions. These guided-mode resonance (GMR) filters are implemented by integrating diffraction gratings into classical thin-film multilayers to produce high efficiency filter response and low sidebands extended over a large spectral range. Diffraction from phase-shifted gratings and gratings with different periods is analyzed using rigorous coupled-wave theory yielding a new approach to filter linewidth broadening, line-shaping, and multi-line filters at normal incidence. New single-grating transmission filters presented have narrow linewidth, high peak transmittance, and low sideband reflectance. A comparison with classical thin-film filters shows that GMR devices require significantly fewer layers to obtain narrow linewidth and high peak response. All-dielectric microwave frequency-selective surfaces operating in reflection or transmission are shown to be realizable with only a few layers using common microwave materials. Single-layer and multilayer waveguide gratings operating as reflection and transmission filters, respectively, were built and tested in the 4--20 GHz frequency range. The presence of GMR notches and peaks is clearly established by the experimental results, and their spectral location and lineshape found to be in excellent agreement with the theoretical predictions. A new computer program using genetic algorithms and rigorous coupled-wave analysis was developed for optimization of multilayer structures containing homogeneous and diffractive layers. This program was utilized to find GMR filters possessing features not previously known. Thus, numerous examples of transmission filters with peaks approaching 100%, narrow linewidths (∼0.03%), and low sidebands have been found in structures containing only 1--3 layers. A new type of GMR device integrating a waveguide grating with subwavelength period on the endface of an optical fiber is developed for high-resolution biomedical or chemical sensors and spectral filtering applications. Diffraction gratings with submicron periods exhibiting high efficiencies have been recorded for the first time on coated and uncoated endfaces of single-mode and multimode fibers. Guided-mode resonance transmittance notches of ∼18% were experimentally obtained with structures consisting of photoresist gratings on thin films of Si3N4 deposited on optical fiber endfaces.
机译:本文开发了新型的反射和透射滤光片,并在光学和微波光谱区域进行了表征。这些导模谐振(GMR)滤波器是通过将衍射光栅集成到经典薄膜多层中来实现的,以产生高效的滤波器响应和在较大光谱范围内扩展的低边带。使用严格的耦合波理论分析了相移光栅和不同周期的光栅的衍射,从而产生了一种在垂直入射时滤除线宽加宽,线形和多线滤波器的新方法。提出的新型单光栅透射滤波器具有较窄的线宽,较高的峰值透射率和较低的边带反射率。与经典薄膜滤光片的比较表明,GMR器件所需的层数明显减少,以实现窄线宽和高峰值响应。示出了在反射或透射中运行的全电介质微波频率选择表面仅使用普通微波材料仅需几层即可实现。分别构建了反射和透射滤光片的单层和多层波导光栅并在4--20 GHz频率范围内进行了测试。实验结果清楚地确定了GMR陷波和峰的存在,并且发现它们的光谱位置和线形与理论预测非常吻合。开发了一种使用遗传算法和严格的耦合波分析的新计算机程序,用于优化包含均质层和衍射层的多层结构。利用该程序可以找到具有以前未知特征的GMR滤波器。因此,在仅包含1--3层的结构中发现了许多峰值接近100%,线宽窄(〜0.03%)和低边带的透射滤波器的例子。针对高分辨率生物医学或化学传感器和光谱过滤应用,开发了一种新型GMR设备,该设备在光纤端面上集成了亚波长周期的波导光栅。具有亚微米周期表现出高效率的衍射光栅已首次记录在单模和多模光纤的涂覆和未涂覆端面上。通过由沉积在光纤端面上的Si3N4薄膜上的光致抗蚀剂光栅组成的结构,通过实验获得了〜18%的导模共振透射率缺口。

著录项

  • 作者

    Tibuleac, Sorin.;

  • 作者单位

    The University of Texas at Arlington.;

  • 授予单位 The University of Texas at Arlington.;
  • 学科 Physics Optics.;Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 195 p.
  • 总页数 195
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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