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首页> 外文期刊>Applied optics >Optimization of a thick polyvinyl alcohol-acrylamide photopolymer for data storage using a combination of angular and peristrophic holographic multiplexing
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Optimization of a thick polyvinyl alcohol-acrylamide photopolymer for data storage using a combination of angular and peristrophic holographic multiplexing

机译:结合角度和蠕变全息复用技术优化用于数据存储的厚聚乙烯醇-丙烯酰胺光聚合物

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摘要

The capability of polyvinyl alcohol-acrylamide photopolymer materials to obtain angularly multiplexed holographic gratings has been demonstrated [Appl. Phys. B 76, 851 (2003)]. A combination of two multiplexing methods--peristrophic and angular multiplexing--is used to record 60 holograms. An exposure schedule method is used to optimize the capability of the photopolymerizable holographic material and obtain holograms with a higher, more uniform diffraction efficiency. In addition, because of this exposure schedule method, the entire dynamic range (M#) of the material will be exploited, obtaining values of approximately M# approx 9 in layers approximately 800 (mu)m thick.
机译:已经证明了聚乙烯醇-丙烯酰胺光敏聚合物材料获得角度多路复用全息光栅的能力[Appl。物理B 76,851(2003)。两种多路复用方法的组合-垂直和角多路复用-用于记录60个全息图。曝光计划法用于优化可光聚合全息材料的性能,并获得具有更高,更均匀衍射效率的全息图。此外,由于采用了这种曝光计划方法,将利用材料的整个动态范围(M#),从而在约800μm厚的层中获得约M#约9的值。

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