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Low-Distortion Holographic Data Storage Media Using Free-Radical Ring-Opening Polymerization

机译:使用自由基开环聚合的低失真全息数据存储介质

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摘要

Holographic data storage, due to its potential to increase capacity beyond one terabyte per disk, is tipped to be one of the next generation optical data storage technologies. Polymer-based systems are leading candidates due to their high dynamic range, high sensitivities, and flexible and easy production, and yet polymerization-shrinkage-induced distortion is a major hurdle for its reliable use. In this paper, a new free radical polymerization holographic recording medium, based on low shrink cyclic allylic sulfides (LS-CASs) ring-opening monomers, is proposed and demonstrated. The percentage of volume shrinkage is measured to be 0.02%, with refractive index (RI) contrast of (1.01 ±0.5) × 10~(-3). The measured volume shrinkage is, to the authors' best knowledge, the best reported so far in the literature. Other parameters such as sensitivity, dynamic range, and dark reaction properties are also measured, where the values can be optimized with high RI functional groups without sacrificing the low shrinkage.
机译:由于全息数据存储有潜力将容量提高到每个磁盘超过1 TB,因此有望成为下一代光学数据存储技术之一。基于聚合物的系统因其高动态范围,高灵敏度,灵活且易于生产而成为领先的候选产品,然而聚合收缩引起的变形是可靠使用的主要障碍。本文提出并论证了一种基于低收缩环状烯丙基硫醚(LS-CASs)开环单体的新型自由基聚合全息记录介质。测得的体积收缩百分比为0.02%,折射率(RI)对比度为(1.01±0.5)×10〜(-3)。据作者所知,测得的体积收缩率是迄今为止文献中报道的最好的。还测量了其他参数,例如灵敏度,动态范围和暗反应特性,可以在不牺牲低收缩率的情况下,使用高RI官能团来优化这些值。

著录项

  • 来源
    《Integration》 |2009年第22期|3560-3566|共7页
  • 作者单位

    Centre for Micro-Photonics Faculty of Engineering and Industrial Sciences Swinburne University of Technology P. O. Box 218 Hawthorn, Victoria 3122 (Australia) Cooperative Research Centre for Polymers 32 Business Park Drive, Notting Hill, Victoria 3168 (Australia);

    Centre for Micro-Photonics Faculty of Engineering and Industrial Sciences Swinburne University of Technology P. O. Box 218 Hawthorn, Victoria 3122 (Australia) Cooperative Research Centre for Polymers 32 Business Park Drive, Notting Hill, Victoria 3168 (Australia);

    Centre for Micro-Photonics Faculty of Engineering and Industrial Sciences Swinburne University of Technology P. O. Box 218 Hawthorn, Victoria 3122 (Australia) Cooperative Research Centre for Polymers 32 Business Park Drive, Notting Hill, Victoria 3168 (Australia);

    CSIRO Molecular and Health Technologies CSIRO Future Manufacturing Flagship Clayton South, Victoria 3169 (Australia) Cooperative Research Centre for Polymers 32 Business Park Drive, Notting Hill, Victoria 3168 (Australia);

    Centre for Micro-Photonics Faculty of Engineering and Industrial Sciences Swinburne University of Technology P. O. Box 218 Hawthorn, Victoria 3122 (Australia) CSIRO Molecular and Health Technologies CSIRO Future Manufacturing Flagship Clayton South, Victoria 3169 (Australia) Cooperative Research Centre for Polymers 32 Business Park Drive, Notting Hill, Victoria 3168 (Australia);

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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