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Shrinkage control in a photopolymerizable hybrid solgel material for holographic recording

机译:用于全息记录的可光聚合混合溶胶凝胶材料中的收缩控制

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摘要

We report the correction of the shrinkage observed during UV postrecording curing in a holographic solgel material that was recently achieved by the use of various chemical formulations for the composition of the hybrid supporting matrix. We found that a chemical modification of the matrix noticeably attenuates the shrinkage (from 1.3% to 0.4% of the material's initial thickness with the inclusion of just 20% tetramethylorthosilicate), providing a material with improved stability for permanent data storage applications. The holographic properties of samples with different binders are also reported. In addition, a theoretical study has revealed the way by which to compensate for angular deviation in the Bragg condition during UV postrecording by tailoring the binder shrinkage (s), the maximum refractiveindex modulation capability of the photosensitive mixture (Δn), or both.
机译:我们报道了在全息溶胶凝胶材料中紫外线后记录固化过程中观察到的收缩率的校正,该收缩率最近通过使用各种化学制剂用于混合支撑基质的组成而实现。我们发现,对基体进行化学修饰可显着降低收缩率(仅包含20%的原硅酸四甲酯,可将收缩率从材料的初始厚度的1.3%降低至0.4%),从而为永久数据存储应用提供了更高的稳定性。还报道了具有不同粘合剂的样品的全息性质。此外,一项理论研究还揭示了通过调整粘合剂的收缩率,光敏混合物的最大折射率调制能力(Δn)或两者来补偿UV后记录过程中布拉格条件下角度偏差的方法。

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