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Depth attenuated refractive index profiles in holographic gratings recorded in photopolymer materials

机译:光敏聚合物材料中记录的全息光栅中的深度衰减折射率分布

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Photopolymers are systems of organic molecules that rely on photoinitiated polymerization to record volume phase holograms. Characteristics such as good light sensitivity, large dynamic range, good optical properties and relatively low cost make photopolymers one of the most promising materials for write-one, read-many (WORM) holographic data storage applications. Thus, it is interesting to understand the mechanisms that control the way information is stored in photopolymer materials. Different authors have demonstrated that two processes play the main role in hologram formation: monomer polymerization and monomer diffusion. A number of models based on these two processes have been proposed and their prediction capability has been validated. In this work we extend the capabilities of the existent models by introducing another important characteristic: the attenuation of light through the depth of the material which happens in the recording process. In order to check the validity of the theoretical model that we propose, volume phase transmission gratings are recorded in a PVA/Acrylamide photopolymer with different spatial frequencies. Using the Rigorous Coupled Wave Theory (RCWT) we show that we can obtain information about the higher harmonics in the recorded refractive index modulation. Comparison between simulated and experimental results validates the interpretation provided by the proposed model.
机译:光敏聚合物是依靠光引发聚合来记录体相全息图的有机分子系统。光敏聚合物具有良好的光敏性,较大的动态范围,良好的光学性能以及相对较低的成本等特性,使光敏聚合物成为一种适用于一次写入多次读取(WORM)全息数据存储应用的最有希望的材料之一。因此,有趣的是了解控制信息在光聚合物材料中存储方式的机制。不同的作者已经证明,两个过程在全息图的形成中起主要作用:单体聚合和单体扩散。已经提出了基于这两个过程的许多模型,并验证了它们的预测能力。在这项工作中,我们通过引入另一个重要特征来扩展现有模型的功能:在记录过程中,光线穿过材料的深度而衰减。为了检验我们提出的理论模型的有效性,将体积相透射光栅记录在具有不同空间频率的PVA /丙烯酰胺光聚合物中。使用严格耦合波理论(RCWT),我们表明我们可以获得有关记录的折射率调制中高次谐波的信息。仿真结果与实验结果之间的比较验证了所提出模型的解释。

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