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Optoelectronic circuits using holographic elements.

机译:使用全息元件的光电电路。

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摘要

This thesis presents the results of research in the use of holographic modules in optoelectronic systems, their applications, and the characterization of polymer materials on which to record volume holograms, for these modules. The first chapter makes the case that a direct interface between an optical memory and a chip integrating detectors and logic circuitry can better utilize the high parallelism inherent in holographic modules.; The second chapter introduces the idea of reconfigurable computing and Field Programmable Gate Arrays (FPGAs) as the framework in which to design a hybrid system, the Optically Programmable Gate Array (OPGA), that outperforms its electronic counterpart by reducing its reconfiguration time by three orders of magnitude. The OPGA is the combination of three elements: an addressing device to selectively recall holographic data pages, an optical memory, and an optoelectronic chip. The third chapter investigates the issues related to each one of these elements and their integration in a compact module. Operation of the system is demonstrated by holographically programming the OPGA chip.; In the fourth chapter, experiments are performed to characterize the Aprilis ULSH500-7A photopolymer and study quantitatively its ability to store high-bandwidth holographic data pages. A method for hologram mastering and copying using Aprilis films is also demonstrated.; Chapter five investigates the recording and diffusional-amplification dynamics of the PQ-doped PMMA polymer. Different strategies to optimize the material by reducing the duration of its post-exposure are examined, and the corresponding experimental results presented. The recording of strong gratings in samples of PQ-PMMA is tested to determine the suitability of this material for components in optical fiber networks.; The final chapter deals with applications and systems that can benefit from a direct interface with a holographic module. The use of optically programmable processors in the field of neural prosthetics is explored. The design of a holographic 4-D microscope is presented and tested experimentally.
机译:本文介绍了在光电系统中使用全息模块,其应用以及在这些模块上记录体积全息图的聚合物材料的表征的研究结果。第一章阐述了光学存储器与集成检测器和逻辑电路的芯片之间的直接接口可以更好地利用全息模块固有的高并行性的情况。第二章介绍了可重配置计算和现场可编程门阵列(FPGA)的概念,以此为框架设计了一种混合系统,即光可编程门阵列(OPGA),该系统通过将其重配置时间减少了三个数量级而胜过其电子副本数量级。 OPGA是以下三个元素的组合:用于选择性地调用全息数据页的寻址设备,光学存储器和光电芯片。第三章研究与这些元素中的每个元素相关的问题以及它们在紧凑模块中的集成。通过对OPGA芯片进行全息编程来演示系统的操作。在第四章中,进行了实验以表征Aprilis ULSH500-7A光聚合物,并定量研究其存储高带宽全息数据页的能力。还展示了一种使用Aprilis胶片进行全息图原版复制的方法。第五章研究了掺PQ的PMMA聚合物的记录和扩散放大动力学。研究了通过减少暴露后持续时间来优化材料的不同策略,并提出了相应的实验结果。测试了PQ-PMMA样品中强光栅的记录,以确定该材料是否适合光纤网络中的组件。最后一章介绍可以从与全息模块直接接口中受益的应用程序和系统。探索了在神经假体领域中光学可编程处理器的使用。介绍了全息4-D显微镜的设计并进行了实验测试。

著录项

  • 作者

    Mumbru, Jose.;

  • 作者单位

    California Institute of Technology.;

  • 授予单位 California Institute of Technology.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 230 p.
  • 总页数 230
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术 ;
  • 关键词

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