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Photopolymer Material Used in the Recording of Slanted Gratings

机译:用于记录倾斜光栅的光敏聚合物材料

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Photopolymer materials are practical materials for use as holographic recording media, as they are inexpensive and self-processing. By understanding the mechanisms present during recording in these materials their limitations for certain processes can be improved and a more efficient, environmentally stable material can be produced. Understanding the photochemical and photo-physical processes present during the formation of holographic gratings in photopolymer materials is crucial in enabling further development of holographic applications such as data storage, metrology, free space optical components etc. In order to achieve this, it is necessary to develop material electromagnetic theory, which models these applications. In this paper we begin by experimentally estimating parameters associated with absorption due to dye in the photopolymer. This information is needed when using Non-local Photo-Polymerization-Driven Diffusion model (NPDD) to characterise such materials. Absorption also leads to the formation of non-uniform tapered grating structures. While the NPDD has been used to characterise materials recording slanted gratings problems have arisen in determining diffusion constants accurately. In order to deal with electromagnetic diffraction by the resulting non-uniform slanted grating structures we develop first order analytic expressions governing the replay of such gratings.
机译:光敏聚合物材料是便宜的且可自行加工的实用材料,可用作全息记录介质。通过了解在这些材料中记录期间存在的机理,可以改善它们在某些过程中的局限性,并且可以生产更有效,对环境稳定的材料。了解在光敏聚合物材料中形成全息光栅期间存在的光化学和光物理过程,对于进一步开发诸如数据存储,计量学,自由空间光学组件等全息应用至关重要。为了实现这一点,有必要发展材料电磁理论,为这些应用建模。在本文中,我们首先通过实验估算与光聚合物中染料引起的吸收相关的参数。使用非本地光聚合驱动扩散模型(NPDD)表征此类材料时,需要此信息。吸收还导致形成不均匀的锥形光栅结构。尽管NPDD已被用来表征记录倾斜光栅的材料,但在准确确定扩散常数方面出现了问题。为了通过所得的不均匀倾斜的光栅结构处理电磁衍射,我们开发了控制此类光栅重放的一阶解析表达式。

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