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Self-processing, diffusion-based photopolymers for holographic applications

机译:全息应用的自加工,基于扩散的光敏聚合物

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摘要

The new photopolymers for holographic applications described herein are based on a cross-linked matrix in which the holographic grating is formed by photo-polymerization of guest monomers in an interference pattern of the recording light. Diffusion of monomer, triggered by this photo-polymerization, from the dark to the bright fringes of the interference pattern is the key parameter for creating high modulation in refractive index Δn during hologram recording. This leads to bright visual volume holograms with high diffraction efficiency. The holographic photopolymers are self-processing. After recording the hologram only (incoherent) light exposure is necessary to bleach the final product and fix the hologram. Unlike earlier photopolymers used in holography, these new materials offer the advantages of no chemical or thermal processing combined with low shrinkage and detuning. Additionally, due to good light sensitivity the formation of the holograms is fast and the film obtained after curing is highly transparent, which makes the material suitable for both, reflection and transmission holography.
机译:本文所述的用于全息应用的新型光聚合物基于交联的基质,其中全息光栅通过客体单体在记录光的干涉图中的光聚合而形成。由该光聚合引发的单体从干涉图案的暗条纹到亮条纹的扩散是在全息图记录期间在折射率Δn中产生高调制的关键参数。这导致具有高衍射效率的明亮的视觉体积全息图。全息光敏聚合物是自加工的。记录完全息图后,仅需(非相干)曝光即可漂白最终产品并固定全息图。与全息术中使用的较早的光敏聚合物不同,这些新材料具有无需化学或热处理以及低收缩和失谐的优点。另外,由于良好的光敏性,全息图的形成是快速的,并且固化后获得的膜是高度透明的,这使得该材料适合于反射全息图和透射全息图。

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