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Study of an acrylamide-based photopolymer for use as a holographic data storage medium

机译:用作全息数据存储介质的丙烯酰胺基光敏聚合物的研究

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An acrylamide-based photopolymer formulated in the Centre for Industrial and Engineering Optics has been investigated with a view to further optimisation for holographic optical storage. Series of 15 to 30 gratings were angularly multiplexed in a volume of the photopolymer layers with different thickness at a spatial frequency of 1500 lines/mm. Since the photopolymer is a saturable material, an exposure scheduling method was used to exploit the entire dynamic range of the material and allow equal strength gratings to be recorded. From this investigation the photopolymer layer's M/# was determined with regard to the recording geometry used. The temporal stability of photopolymer layers was studied in terms of diffraction efficiency and change of the reconstructed angle due to material shrinkage. In addition, the potential of the photopolymer as a holographic data storage medium was demonstrated by recording bit data-pages.
机译:为了进一步优化全息光学存储,已经研究了工业和工程光学中心配制的基于丙烯酰胺的光敏聚合物。将一系列15至30个光栅以空间密度为1500线/ mm的角度在不同厚度的光敏聚合物层中进行多路复用。由于光敏聚合物是可饱和的材料,因此使用曝光调度方法来利用材料的整个动态范围,并记录相同强度的光栅。根据该研究,就所使用的记录几何形状确定了光敏聚合物层的M /#。根据衍射效率和由于材料收缩引起的重构角度的变化,研究了光敏聚合物层的时间稳定性。另外,通过记录位数据页来证明光聚合物作为全息数据存储介质的潜力。

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