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Analyzation of Photopolymer Materials Shrunken Influence for Thick Hologram Gratings

机译:光聚合物材料分析缩小全息图光栅的影响

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The photopolymer materials are good media to record thick hologram gratings, because photopolymer materials have high resolution, low cost, simple process technology and so on. According to coupled wave theory for thick hologram gratings, we know that the same object beam can be reconstructed if the same reference beam is used to retrieve a thick hologram grating. However, the shrinkage always occurs in the photopolymer materials because of environment temperature, humidity, vibration etc. For instance, the same object beam cannot be reconstructed even the same reference beam to be used. In this paper, we will analysis the shrinkage influence of photopolymer materials for thick hologram gratings. We divide the photopolymer materials into several geometry layers, and analysis the reconstructed characteristics separately basing on coupled wave theory of Kogelnik. Through gradually continuous changing the angle between gratings and the border (we call it slant angle), we can build the geometry model of gratings bending caused by shrinkage of materials. We calculate wave complex amplitude diffracted from every layer, and superpose them to compute the total diffraction efficiency. We simulate above methods to obtain the curve of diffraction efficiency with reconstruction wavelength by using Matlab software. Comparing the simulated results with the experiments results, we can deduce the probable situation of thick hologram gratings bending after photopolymer materials shrink.
机译:光聚合物材料是良好的介质,以记录厚的全息图格栅,因为光聚合物材料具有高分辨率,成本低,工艺技术等高。根据厚全息图光栅的耦合波理论,我们知道如果使用相同的参考光束来检索厚全息光栅,则可以重建相同的物体光束。然而,由于环境温度,湿度,振动等,在光聚合物材料中总是发生收缩。例如,即使要使用的相同的参考光束也不能重建相同的物体束。本文将分析光聚合物材料对厚全息图光栅的收缩影响。我们将光聚合物材料分成几个几何层,分析了基于Kogelnik耦合波理论的重建特性。通过逐渐连续改变光栅和边界之间的角度(我们称之为倾斜角),我们可以建立由材料收缩引起的光栅弯曲的几何模型。我们计算从每层衍射的波复数幅度,并叠加它们以计算总衍射效率。通过使用MATLAB软件,我们模拟上述方法以获得具有重建波长的衍射效率的曲线。将模拟结果与实验结果进行比较,我们可以推测光聚合物材料收缩后弯曲厚全息图弯曲的可能情况。

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