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IR Sensitive Photorefractive Polymers, The First Updateable Holographic 3D Display

机译:红外感光光折变聚合物,首款可更新的全息3D显示屏

摘要

This work presents recent advances in the development of infra-red sensitive photorefractive polymers, and updateable near real-time holographic 3D displays based on photorefractive polymers. Theoretical and experimental techniques used for design, fabrication and characterization of photorefractive polymers are outlined. Materials development and technical advances that made possible the use of photorefractive polymers for infra-red free-space optical communications, and 3D holographic displays are presented.Photorefractive polymers are dynamic holographic materials that allow recording of highly efficient reversible holograms. The longest operation wavelength for a photorefractive polymer before this study has been 950nm, far shorter than 1550nm, the wavelength of choice for optical communications and medical imaging. The polymers shown here were sensitized using two-photon absorption, a third order nonlinear effect, beyond the linear absorption spectrum of organic dyes, and reach 40% diffraction efficiency with a 35ms response time at this wavelength. As a consequence of two-photon absorption sensitization they exhibit non-destructive readout, which is an important advantage for applications that require high signal-to-noise ratios.Holographic 3D displays provide highly realistic images without the need for special eyewear, making them valuable tools for applications that require "situational awareness" such as medical, industrial and military imaging. Current commercially available holographic 3D displays employ photopolymers that lack image updating capability, resulting in their restricted use and high cost per 3D image. The holographic 3D display shown here employs photorefractive polymers with nearly 100% diffraction efficiency and fast writing time, hours of image persistence, rapid erasure and large area, a combination of properties that has not been shown before. The 3D display is based on stereography and utilizes world's largest photorefractive devices (4x4 inch in size). It can be recorded within a few minutes, viewed for several hours without the need for refreshing and can be completely erased and updated with new images when desired, thusly comprising the first updateable holographic 3D display with memory, suitable for practical use.
机译:这项工作介绍了红外敏感光折射聚合物的最新进展,以及基于光折射聚合物的可更新近实时全息3D显示。概述了用于光折变聚合物的设计,制造和表征的理论和实验技术。介绍了材料开发和技术进步,这些技术使光折变聚合物用于红外自由空间光通信和3D全息显示成为可能。光折变聚合物是动态全息材料,可以记录高效可逆全息图。这项研究之前,光折变聚合物的最长工作波长为950nm,远远小于1550nm,后者是光通信和医学成像的首选波长。此处显示的聚合物使用双光子吸收(一种三阶非线性效应)来敏化,超出了有机染料的线性吸收光谱,并且在此波长下具有35ms的响应时间,达到了40%的衍射效率。双光子吸收敏化的结果是它们显示出无损读数,这对于要求高信噪比的应用而言是一个重要优势。全息3D显示器无需特殊的眼镜即可提供高度逼真的图像,因此非常有价值用于需要“情境感知”的应用程序的工具,例如医学,工业和军事成像。当前的市售全息3D显示器使用缺乏图像更新能力的光敏聚合物,导致其受限的使用和每张3D图像的高成本。此处显示的全息3D显示器使用具有近100%衍射效率和快速写入时间,数小时的图像持久性,快速擦除和大面积的光折变聚合物,综合了以前未显示的特性。 3D显示器基于立体影像,并使用了世界上最大的光折射设备(尺寸为4x4英寸)。它可以在几分钟之内记录下来,不需要刷新就可以观察几个小时,并且在需要时可以完全擦除并使用新图像进行更新,从而构成了第一台带有存储器的可更新全息3D显示器,适合实际使用。

著录项

  • 作者

    Tay Savas;

  • 作者单位
  • 年度 2007
  • 总页数
  • 原文格式 PDF
  • 正文语种 EN
  • 中图分类

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