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Persistent holographic storage in photorefractive crystals

机译:光折变晶体中持久的全息存储

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摘要

The work presented in this thesis has been focused on solving the most important and long-lasting problem of destructive read-out in holographic recording in photorefractive crystals. Several interesting methods for solving this problem were proposed and demonstrated by researchers for more than two decades. However, none of themudwere practical for read / write applications. The most promising all-optical method, which is still being pursued by some researchers, was two-step recording. However,udthe method suffers from low sensitivity and dynamic range, even in the optimized conditions. Furthermore, several experimental results were not explained due to theudlack of a complete understanding of the dominant phenomena that were involved. Our strategy in solving the problem of destructive read-out of holograms was to first provide a complete understanding of the physics of the two-step recording method by appropriate modeling, and to explain the experimental results that had not been explained before. Such an understanding gave us a good idea about the major problem of the method, and we were able to find a solution to that problem by adding one dopand to the recording crystal. The method we developed both theoretically and experimentally in this thesis is called two-center holographic recording. The initial results of the method (without any optimization) offer more than one order of magnitude (and for some parameters, two orders of magnitude) improvement over the optimized two-step recording method.udIn this thesis, we provide a complete modeling for two-center recording that agreesudvery well with the experimental results, provides us with the understanding of theudmain physical phenomena that are involved, and helps us in optimizing the method.udThe next step is to relate the material and system parameters for the system design.udWe present in this thesis a standard framework for such a relation, and outline theudmain general steps in the system design using two-center recording. The idea developedudin this thesis opens us several avenues for further thinking and research, andudsome of them are already being investigated by different research groups.
机译:本文提出的工作一直集中于解决光折射晶体全息记录中最重要和持久的破坏性读出问题。二十多年来,研究人员提出并证明了几种解决该问题的有趣方法。但是,它们都不适合读/写应用程序。一些研究人员仍在追求的最有前途的全光学方法是两步记录。但是,即使在最佳条件下,该方法仍具有较低的灵敏度和动态范围。此外,由于对所涉及的主要现象缺乏完整的理解,因此没有解释几个实验结果。我们解决全息图破坏性读取问题的策略是,首先通过适当的建模来全面了解两步记录方法的物理原理,并解释以前没有解释过的实验结果。这样的理解为我们提供了关于该方法主要问题的好主意,并且我们能够通过在记录晶体中添加一个掺杂物来找到该问题的解决方案。我们在理论上和实验上开发的方法称为两中心全息记录。该方法的初始结果(不进行任何优化)与优化的两步记录方法相比,提供了一个以上的数量级(对于某些参数,两个数量级)的改进。 ud本文为该模型提供了完整的建模方法两中心记录,与实验结果非常吻合,使我们对所涉及的物理现象有更深入的了解,并有助于我们优化方法。下一步是将材料和系统参数关联起来系统设计。本文为这种关系提供了一个标准框架,并概述了使用两中心记录的系统设计中的主要步骤。本文所提出的思想为我们提供了进一步思考和研究的几种途径,其中一些已经被不同的研究小组进行了研究。

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    Adibi Ali;

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  • 年度 2000
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