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Mechanisms and dynamics of infrared optical limiting and switching using nematic liquid crystal films.

机译:使用向列型液晶薄膜进行红外光学限制和转换的机理和动力学。

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摘要

A detailed study of several novel infrared optical limiting and switching devices using nematic liquid crystal films is presented. The limiting and switching characteristics of the devices result from two different nonlinear optical processes, including thermally mediated transverse self-phase modulation and nonlinear interface switching near the total internal reflection state. Both transmission to total internal reflection and total internal reflection to transmission switching are considered. Detailed theoretical models for these devices are developed to aid in device design and optimization. The theoretical models take into account the laser beam parameters (intensity, polarization, wavelength, etc.), the material parameters (absorption, refractive index, etc.) and device geometry (placement of lenses, liquid crystal films, detectors, etc.). The relevant optical and thermal properties of the nematic liquid crystal BDH-E7 have been measured in the 9-11 {dollar}mu m{dollar} spectral region. Many of these parameters were unknown at these wavelengths. The effective value of {dollar}chisp{lcub}(3){rcub}{dollar} was measured using a cw CO{dollar}sb2{dollar} laser ({dollar}lambda{dollar} = 10.6 {dollar}mu m{dollar}) and is on the order of 10{dollar}sp{lcub}-4{rcub}{dollar} esu. The results of a detailed experimental study of transverse self-phase modulation and limiting devices based on this effect are given. The data indicate that the limiting threshold for these devices is on the order of 20 W/{dollar}cmsp2{dollar}. The dynamics of transmission to total internal reflection and total internal reflection to transmission switching were studied using a CO{dollar}sb2{dollar} laser. The experimental results indicate that submicrosecond switching times may be possible. The results of this study show that practical limiting and switching devices for use in IR sensor protection applications can be fabricated using nematic liquid crystal films.
机译:详细介绍了几种使用向列型液晶薄膜的新型红外光学限位和转换装置。器件的限制和开关特性来自两个不同的非线性光学过程,包括热介导的横向自相位调制和接近全内反射状态的非线性界面切换。既考虑到全内反射的透射,也考虑到对转换的全内反射。为这些设备开发了详细的理论模型,以帮助设备设计和优化。理论模型考虑了激光束参数(强度,偏振,波长等),材料参数(吸收率,折射率等)和设备几何形状(透镜,液晶膜,检测器的位置等) 。向列型液晶BDH-E7的相关光学和热学性质已在9-11 {美元}μm{美元}光谱范围内进行了测量。这些参数中有许多在这些波长处是未知的。使用连续波CO {dollar} sb2 {dollar}激光器({dollar} lambda {dollar} = 10.6 {dollar} mu m {美元),并且大约为10 {dollar} sp {lcub} -4 {rcub} {dollar} esu。给出了基于这种效应的横向自相位调制和限幅装置的详细实验研究的结果。数据表明,这些设备的极限阈值约为20 W / {cm3} cmsp2 {dollar}。使用CO {dollar} sb2 {dollar}激光器研究了传输至全内反射和传输至全内反射的动力学。实验结果表明,亚微秒的切换时间是可能的。这项研究的结果表明,可以使用向列液晶膜来制造用于IR传感器保护应用的实际限制和开关设备。

著录项

  • 作者单位

    The Pennsylvania State University.;

  • 授予单位 The Pennsylvania State University.;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 1990
  • 页码 143 p.
  • 总页数 143
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

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