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Two-dimensional guided mode resonant structures for spectral filtering applications.

机译:用于频谱滤波应用的二维导模谐振结构。

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摘要

Guided mode resonant (GMR) structures are optical devices that consist of a planar waveguide with a periodic structure either imbedded in or on the surface of the structure. The resonance anomaly in GMR structures has many applications as dielectric mirrors, tunable devices, sensors, and narrow spectral band reflection filters. A desirable response from a resonant grating filter normally includes a nearly 100% narrowband resonant spectral reflection (transmission), and a broad angular acceptance at either normal incidence or an oblique angle of incidence.;This dissertation is a detailed study of the unique nature of the resonance anomaly in GMR structures with two-dimensional (2-D) periodic perturbation. Clear understanding of the resonance phenomenon is developed and novel 2-D GMR structures are proposed to significantly improve the performance of narrow spectral filters. In 2-D grating diffraction, each diffracted order inherently propagates in its distinct diffraction plane. This allows for coupled polarization dependent resonant leaky modes with one in each diffraction plane. The nature of the interaction between these non-collinear guides and its impact on spectral and angular response of GMR devices is investigated and quantified for 2-D structures with rectangular and hexagonal grids. Based on the developed understanding of the underlying phenomenon, novel GMR devices are proposed and analyzed.;A novel controllable multi-line guided mode resonant (GMR) filter is proposed. The separation of spectral wavelength resonances supported by a two-dimensional GMR structure can be coarse or fine depending on the physical dimensions of the structure and not the material properties. Multiple resonances are produced by weakly guided modes individually propagating along multiple planes of diffraction. Controllable two-line and three-line narrow-band reflection filter designs with spectral separation from a few up to hundreds of nanometers are exhibited using rectangular-lattice and hexagonal-lattice grating GMR structures, respectively.;Broadening of the angular response of narrow band two-dimension guided mode resonant spectral filters, while maintaining a narrow spectral response, is investigated. The angular response is broadened by coupling the diffracted orders into multiple fundamental guided resonant modes. These guided modes have the same propagation constant but propagating in different planes inherent in multiple planes of diffraction of the 2-D gratings. The propagation constants of the guided resonant modes are determined from the physical dimensions of the grating (periodicity and duty cycle) and the incident direction. A five-fold improvement in the angular tolerance is achieved using a grating with strong second Bragg diffraction in order to produce a crossed diffraction. A novel dual grating structure with a second grating located on the substrate side is proposed to further broaden the angular tolerance of the spectral filter without degrading its spectral response. This strong second Bragg backward diffraction from the substrate grating causes two successive resonant bands to merge producing a resonance with symmetric broad angular response.
机译:导模谐振(GMR)结构是由平面波导组成的光学设备,该平面波导具有嵌入结构内部或表面的周期性结构。 GMR结构中的共振异常具有许多应用,例如介电镜,可调设备,传感器和窄谱带反射滤光片。谐振光栅滤波器的理想响应通常包括近100%的窄带谐振光谱反射(透射),以及在法向入射角或斜入射角处的广角接受度。二维(2-D)周期扰动的GMR结构中的共振异常。发展了对共振现象的清晰理解,并提出了新颖的2-D GMR结构以显着提高窄光谱滤波器的性能。在二维光栅衍射中,每个衍射级固有地在其不同的衍射平面中传播。这允许耦合的偏振相关的共振泄漏模式在每个衍射平面中具有一个。对于具有矩形和六边形网格的二维结构,研究和量化了这些非共线导轨之间相互作用的性质及其对GMR设备的光谱和角度响应的影响。基于对潜在现象的深入理解,提出并分析了新型GMR器件。提出了一种新型可控多线导模谐振(GMR)滤波器。由二维GMR结构支持的光谱波长共振的分离可以是粗略的或精细的,具体取决于结构的物理尺寸而不是材料特性。多个共振是由沿多个衍射平面分别传播的弱导模产生的。分别使用矩形晶格和六角晶格光栅GMR结构展示了可控的两线和三线窄带反射滤光片设计,其光谱分离范围从几纳米到几百纳米。研究了二维导模谐振光谱滤波器,同时保持了较窄的光谱响应。通过将衍射级耦合到多个基本导向共振模式中,可以扩大角度响应。这些引导模式具有相同的传播常数,但是在二维光栅的多个衍射平面固有的不同平面中传播。引导共振模式的传播常数由光栅的物理尺寸(周期性和占空比)和入射方向确定。为了产生交叉衍射,使用具有强第二布拉格衍射的光栅可以将角度公差提高五倍。提出了一种新颖的双重光栅结构,其具有位于基板侧的第二光栅,以进一步加宽光谱滤波器的角度公差,而不会降低其光谱响应。来自衬底光栅的这种强烈的第二布拉格向后衍射引起两个连续的共振带合并,从而产生具有对称广角响应的共振。

著录项

  • 作者

    Boonruang, Sakoolkan.;

  • 作者单位

    University of Central Florida.;

  • 授予单位 University of Central Florida.;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 209 p.
  • 总页数 209
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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