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Ultra-efficient liquid crystal projection displays: Polarizer-free displays using continuous polarization gratings.

机译:超高效液晶投影显示器:使用连续偏振光栅的无偏振显示器。

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摘要

Liquid crystals constitute a distinct state of matter that possesses switchable anisotropic properties. These properties have enabled several electro-optic applications that are compact, and consume low power. The success of the Liquid Crystal Display industry over the past few decades is attributed to these advantages. As a result, today we find LCDs in a variety of consumer electronics including cell phones, flat-panel televisions, and projectors.;Even though LCDs today are one of the most power efficient display devices, there is still room for improvement. Current LCD designs use polarizers that limit the maximum light efficiency to less than 50%. Due to this a family of polarization independent liquid crystal diffraction gratings has been investigated for projection systems. However the nature of the gratings investigated, and problems associated with their fabrication processes have limited the efficiencies of these elements to much less than those predicted by theory.;In this work we mainly discuss one special class of Polarization Gratings (PGs) that has several compelling properties in this context. We develop a solid theoretical framework based on Elastic Continuum principles that reveals several interesting aspects of these devices. Based on this analysis, we lay out foundational design rules that were used to fabricate high quality Liquid Crystal Polarization Gratings (LCPGs) with properties close to those predicted in theory. We then develop new fabrication approaches for creating these gratings on virtually any type of reflective surface; leading to a polarizer free Liquid Crystal On Silicon (LCOS) based projection system that provides a brightness enhancement of nearly two when compared with standard approaches. We then identify and implement an even more revolutionary modulation scheme using polymer-PGs, that achieves the same high efficiency with any off-the-shelf LC microdisplay, and thus can be easily integrated into commercial LC projectors. Key aspects of this technology are discussed and techniques to dramatically enhance contrast ratios are revealed. We conclude with a summary of results, and suggest directions for future research.
机译:液晶构成具有可切换各向异性特性的独特物质状态。这些特性使几种紧凑且消耗低功率的电光应用成为可能。过去几十年来,液晶显示器产业的成功归功于这些优势。结果,今天我们在各种消费电子产品中找到了LCD,包括手机,平板电视和投影仪。尽管LCD是当今功率效率最高的显示设备之一,但仍有改进的空间。当前的LCD设计使用的偏振器将最大光效率限制在50%以下。由于这个原因,已经研究了用于投影系统的一系列偏振无关的液晶衍射光栅。但是,所研究的光栅的性质以及与它们制造过程有关的问题将这些元件的效率限制在远低于理论预测的水平。在这种情况下令人信服的属性。我们基于弹性连续体原理开发了坚实的理论框架,揭示了这些设备的一些有趣方面。在此分析的基础上,我们提出了一些基础设计规则,这些规则可用于制造性能接近理论上预期的高质量液晶偏振光栅(LCPG)。然后,我们开发出新的制造方法,以在几乎任何类型的反射表面上创建这些光栅。导致无偏振器的基于硅上液晶(LCOS)的投影系统与标准方法相比可提供近两倍的亮度增强。然后,我们确定并实施使用聚合物PG的更具革命性的调制方案,该方案可与任何现成的LC微显示器实现相同的高效率,因此可以轻松地集成到商用LC投影仪中。讨论了该技术的关键方面,并揭示了显着提高对比度的技术。最后,我们对结果进行了总结,并提出了未来研究的方向。

著录项

  • 作者

    Komanduri, Ravi K.;

  • 作者单位

    North Carolina State University.;

  • 授予单位 North Carolina State University.;
  • 学科 Engineering Electronics and Electrical.;Physics Radiation.;Physics Theory.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 200 p.
  • 总页数 200
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:47

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