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Investigation and application of nonlinear optics by dopant enhanced nematic liquid crystal films.

机译:掺杂增强向列液晶薄膜在非线性光学中的研究与应用。

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摘要

Liquid crystals are very interesting and unique optical materials which have been thoroughly studied for decades. In recent years, nonlinear optical responses of liquid crystalline materials and their applications have created another revolution in scientific research worldwide. This nonlinear response of liquid crystal is dramatically enhanced by adding certain impurities or dopants. In fact, the discovery and research into photorefractive-like phenomena within nematic liquid crystals containing photo-conductive dopants has opened up new directions of research and applications. In addition, azobenzene and its derivatives doped nematic liquid crystal possesses the most nonlinear and photo-sensitive effects among all the optical materials. Doping liquid crystals with these particular dopants greatly increases their light sensitivities and lowers the intensity thresholds for molecular reorientation.; However, in spite of many experimental studies of light-induced reorientation processes in doped liquid crystals, so far there is no theoretical model that would provide a complete description of the physical mechanisms involved. So far, it is believed that there are many mechanisms involved in reorientation of liquid crystal molecules such as optical and dye-induced torques, a photorefractive space-charge field, and photoisomerization. In this thesis, I present a comprehensive study of nonlinear optical phenomena of dopant enhanced nematic liquid crystals including a complete elucidation of the basic mechanisms and some potential applications.; Apart from the study of photorefractive-like doped liquid crystals, I performed a series of experimental measurements and quantitative analyses on azobenzene derivative doped nematic liquid crystals. By comparing three azobenzene derivative dopants that possess different rates of photoismerization, I was able to determine the mechanisms of the undergoing phenomena. In doped liquid crystals, the enhanced light-induced reorientation of the molecules is found to lead to a strong modulation of the refractive index. Both reorientation and order-parameter change are shown to contribute significantly and equally to the resultant index change, originating from certain intermolecular torques. For methyl red doped materials in particular, the coexistence of photoisomerization and photorefractive-like effects induce the best nonlinearity. Hence, based on the understanding of the large optical nonlinearity of these materials, I also investigated and demonstrated several promising applications. This high photo-sensitivities of these dopant enhanced nematic liquid crystals, to either polarization or intensity of applied optical beams, prove to have great potentials of practical applications for sensor protection and image processing such as wavelength converter, intensity inversion, edge enhancement, and image addition/subtraction.
机译:液晶是非常有趣且独特的光学材料,已经进行了数十年的深入研究。近年来,液晶材料的非线性光学响应及其应用在世界范围内掀起了科学研究的又一场革命。通过添加某些杂质或掺杂剂,可以大大增强液晶的非线性响应。实际上,在含有光导掺杂剂的向列型液晶中对光折变现象的发现和研究为研究和应用开辟了新的方向。此外,在所有光学材料中,偶氮苯及其衍生物掺杂的向列型液晶具有最大的非线性和光敏效应。用这些特定的掺杂剂掺杂液晶极大地提高了它们的光敏性并降低了分子重新取向的强度阈值。然而,尽管对掺杂液晶中的光诱导的重新取向过程进行了许多实验研究,但是到目前为止,还没有理论模型可以提供对所涉及物理机制的完整描述。迄今为止,据信在液晶分子的重新取向中涉及许多机制,例如光学和染料引起的转矩,光折射空间电荷场和光异构化。在本文中,我对掺杂增强向列型液晶的非线性光学现象进行了全面的研究,包括对基本机理的完整阐述和一些潜在的应用。除了研究类似光折变的掺杂液晶外,我还对偶氮苯衍生物掺杂的向列型液晶进行了一系列实验测量和定量分析。通过比较三种具有不同的光电离速率的偶氮苯衍生物掺杂剂,我能够确定这种现象的机理。在掺杂的液晶中,发现增强的光诱导分子的重新定向导致折射率的强烈调制。结果表明,重新定向和阶跃参数变化均对源自分子间转矩的结果折射率变化产生显着且均等的贡献。特别是对于甲基红掺杂的材料,光异构化和类光折射效应的共存会引起最佳的非线性。因此,基于对这些材料的大光学非线性的理解,我还研究并证明了几种有希望的应用。这些掺杂物增强的向列液晶的这种高光敏性,无论对偏振还是所施加光束的强度,都被证明在传感器保护和图像处理(例如波长转换器,强度倒置,边缘增强和图像)的实际应用中具有巨大的潜力。加/减。

著录项

  • 作者

    Shih, Min-Yi.;

  • 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 2001
  • 页码 157 p.
  • 总页数 157
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

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