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Polarization-Insensitive Tunable Optical Filters based on Liquid Crystal Polarization Gratings.

机译:基于液晶偏振光栅的对偏振不敏感的可调光学滤波器。

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摘要

Tunable optical filters are widely used for a variety of applications including spectroscopy, optical communication networks, remote sensing, and biomedical imaging and diagnostics. All of these application areas can greatly benefit from improvements in the key characteristics of the tunable optical filters embedded in them. Some of these key parameters include peak transmittance, bandwidth, tuning range, and transition width.;In recent years research efforts have also focused on miniaturizing tunable optical filters into physically small packages for compact portable spectroscopy and hyperspectral imaging applications such as real-time medical diagnostics and defense applications. However, it is important that miniaturization not have a detrimental effect on filter performance.;The overarching theme of this dissertation is to explore novel configurations of Polarization Gratings (PGs) as simple, low-cost, polarization-insensitive alternatives to conventional optical filtering technologies for applications including hyperspectral imaging and telecommunications. We approach this goal from several directions with a combination of theory and experimental demonstration leading to, in our opinion, a significant contribution to the field.;We present three classes of tunable optical filters, the first of which is an angle-filtering scheme where the stop-band wavelengths are redirected off axis and the passband is transmitted on-axis. This is achieved using a stacked configuration of polarization gratings of various thicknesses. To improve this class of filter, we also introduce a novel optical element, the Bilayer Polarization Grating, exhibiting unique optical properties and demonstrating complex anchoring conditions with high quality. The second class of optical filter is analogous to a Lyot filter, utilizing stacks of static or tunable waveplates sandwiched with polarizing elements. However, we introduce a new configuration using PGs and static waveplates to replace the polarizers in the system, thereby greatly increasing the filter throughput. We then turn our attention to a Fourier filtering technique. This is a fundamentally different filtering approach involving a single PG where the filtering functionality involves selecting a spectral band with a movable aperture or slit and a diffractive element (PG in our case). Finally, we study the integration of a PG in a multi-channel wavelength blocker system focusing on the practical and fundamental limitations of using a PG as a variable optical attenuator/wavelength blocker in a commercial optical telecommunications network.
机译:可调谐滤光片广泛用于各种应用,包括光谱学,光通信网络,遥感以及生物医学成像和诊​​断。所有这些应用领域都可以从改进嵌入其中的可调光学滤波器的关键特性中受益。其中一些关键参数包括峰值透射率,带宽,调谐范围和过渡宽度。近年来,研究工作还集中在将可调谐滤光器小型化为物理小型封装中,以用于紧凑型便携式光谱学和高光谱成像应用(例如实时医疗)。诊断和国防应用。然而,重要的是小型化对滤波器性能不会产生不利影响。本论文的总体主题是探索偏振光栅(PGs)的新颖配置,它是传统光学滤波技术的一种简单,低成本,对偏振不敏感的替代品适用于高光谱成像和电信等应用。我们从理论和实验证明的结合,从几个方向实现了这一目标,从而为该领域做出了重大贡献。;我们提出了三类可调光学滤波器,其中第一类是角度滤波方案,其中阻带波长偏离轴重定向,通带同轴传输。这是通过使用各种厚度的偏振光栅的堆叠配置来实现的。为了改进此类滤光片,我们还引入了一种新颖的光学元件,即双层偏振光栅,它具有独特的光学性能,并能展示出高质量的复杂锚固条件。第二类滤光器与Lyot滤光器类似,利用堆叠有偏振元件的静态或可调波片堆叠。但是,我们引入了一种使用PG和静态波片来替换系统中的偏振器的新配置,从而大大提高了滤光片的吞吐量。然后,我们将注意力转向傅立叶滤波技术。这是与单个PG根本不同的滤波方法,其中滤波功能涉及选择具有可移动孔径或狭缝和衍射元件(在我们的情况下为PG)的光谱带。最后,我们研究了PG在多通道波长阻塞器系统中的集成,重点是在商业光通信网络中将PG用作可变光衰减器/波长阻塞器的实际和基本限制。

著录项

  • 作者

    Nicolescu, Elena.;

  • 作者单位

    North Carolina State University.;

  • 授予单位 North Carolina State University.;
  • 学科 Engineering Electronics and Electrical.;Physics Optics.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 122 p.
  • 总页数 122
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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