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Optical designs for page-based and bit-based holographic data storage systems.

机译:基于页面和基于位的全息数据存储系统的光学设计。

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摘要

In this dissertation, we investigate practical performances and limitations of page-based and bit-based holographic volume recording approaches by comparing the two schemes while taking into account optical aberrations in conjunction with lens designs.; We have shown that the Strehl intensity ratio of the reconstruction reference beam approximates the diffraction efficiency for the bit-based recording. By the Strehl intensity ratio representation, we have compared the media tilt tolerance and shown that an optimum value of the focusing NA (∼0.7) exists to maximize the tilt tolerance for the bit-based approach. Most importantly, the tilt tolerance for the bit-based system is about magnitude larger compared to that of the page-based system.; Lens designs for page-based system involve series steps including first-order power arrangements, third-order designs, fifth-order aberration balancing and ray-trace optimizations. So far, no systematic lens design approach aiming to maximize imaging NA while using less lens elements has been employed.; By focusing on chief-ray deflection angles, the optimum first-order power arrangement, such that a negative element is placed on the Fourier plane, has been identified. Following the first-order design, we have identified that a bi-aspherical meniscus lens or air-spaced spherical lenses are minimum configurations to compensate for all the third-order aberrations.; Balancing of aberrations is essential to increase the imaging NA, but has not been theoretically investigated. By numerically solving expression of variance of wave aberrations, we have shown that four realizable balancing exist and two of them are practically usable and identical. Finally, we have presented high imaging NA designs having single-element (NA ∼ 0.5), double-element (NA ∼ 0.7) and triple-element (NA ∼ 0.8). Also, the imaging and focusing NA of 0.45 system is designed which are usable both for the page- and bit-based holographic recordings.; In conclusion, we have confirmed a high potential of the bit-based holographic storage systems especially in terms of the robustness of the system. We have conducted systematic lens designs of high imaging NA systems having small number of lens elements, which can be a general design guideline for designing lenses in page-based holographic storage systems.
机译:本文通过比较两种方案,同时考虑光学像差和透镜设计,研究了基于页面和基于位的全息体记录方法的实际性能和局限性。我们已经表明,重建参考光束的Strehl强度比近似于基于位的记录的衍射效率。通过斯特列尔强度比表示,我们比较了介质的倾斜公差,并表明存在聚焦NA的最佳值(约0.7)以使基于位的方法的倾斜公差最大化。最重要的是,与基于页面的系统相比,基于位的系统的倾斜公差大约大一个数量级。基于页面的系统的镜头设计涉及一系列步骤,包括一阶光焦度设置,三阶设计,五阶像差平衡和光线跟踪优化。迄今为止,还没有采用旨在最大化成像NA而又使用更少的透镜元件的系统透镜设计方法。通过集中于主射线偏转角,已经确定了最佳的一阶功率布置,使得将负元素放置在傅立叶平面上。按照一阶设计,我们已经确定了双非球面弯月形透镜或空球面透镜是用于补偿所有三阶像差的最小配置。像差的平衡对于增加成像NA是必不可少的,但尚未在理论上进行研究。通过数值求解波像差方差的表达式,我们表明存在四个可实现的平衡,并且其中两个实际上可用且相同。最后,我们提出了具有单元素(NA〜0.5),双元素(NA〜0.7)和三元素(NA〜0.8)的高成像NA设计。同样,设计了0.45系统的成像和聚焦NA,可用于基于页面和基于位的全息记录。总之,我们已经确认了基于位的全息存储系统的巨大潜力,特别是在系统的鲁棒性方面。我们已经进行了具有少量镜头元件的高成像NA系统的系统镜头设计,这可以作为在基于页面的全息存储系统中设计镜头的一般设计准则。

著录项

  • 作者

    Takashima, Yuzuru.;

  • 作者单位

    Stanford University.;

  • 授予单位 Stanford University.;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 182 p.
  • 总页数 182
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

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