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Volume shrinkage in slant fringe gratings of a cationic ring-opening holographic recording material

机译:阳离子开环全息记录材料的斜条纹光栅中的体积收缩

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摘要

A new photopolymer holographic recording material, ULSH-500, based on cationic ring-opening polymerization, has been further optimized to achieve low transverse shrinkage without sacrificing sensitivity. The extent of transverse (z) and lateral (x) shrinkage was determined explicitly in this study for a range of slant angles in volume holograms recorded to near saturation and in holograms of low diffraction efficiency. The values Delta K-x/K-x and Delta K-z/K-z, which represent the physical material shrinkage in the grating vector plane, were ascertained by (1) direct measurement of the differential angle changes in the reference and signal beam angles necessary to achieve Bragg matching and (2) measurement of the average refractive index. The accuracy df this method was primarily limited by the exactness in determining the angle of peak efficiency in the Bragg selectivity curve. It is demonstrated that the peak angle can be established to within a small fraction of a degree. It is shown that the assumption of anchoring and, thus, uniaxial shrinkage as embodied in the conventional fringe rotation model cannot be applied for the photopolymer ULSH-500 under the recording conditions used herein. It is demonstrated that background uplift in angular selectivity profiles can be attributed to nonuniformity in the grating strength throughout the transverse direction of the recording media, and that the uplift can be reduced to negligible levels by using a low fluence preimaging exposure. Calorimetric analysis of reaction kinetics was performed using direct laser irradiation delivered by optical fiber.
机译:基于阳离子开环聚合的新型光聚合物全息记录材料ULSH-500已得到进一步优化,以在不牺牲灵敏度的情况下实现较低的横向收缩率。在这项研究中,对于记录到接近饱和的体积全息图和低衍射效率的全息图中的一系列倾斜角,明确确定了横向(z)和横向(x)收缩的程度。代表光栅矢量平面上物理材料收缩的值Delta Kx / Kx和Delta Kz / Kz是通过(1)直接测量实现布拉格匹配所需的参考角和信号束角的微分角变化来确定的(2)测量平均折射率。该方法的准确性主要受到确定布拉格选择性曲线中峰效率角的准确性的限制。已经证明,可以将峰值角度建立在很小的程度内。结果表明,在本文所用的记录条件下,对于传统的条纹旋转模型所体现的锚定以及单轴收缩的假设不能用于光聚合物ULSH-500。已经证明,角度选择性分布中的背景隆起可以归因于整个记录介质横向上的光栅强度不均匀,并且可以通过使用低注量预成像曝光将隆起减小到可以忽略的水平。反应动力学的量热分析是使用光纤传输的直接激光辐照进行的。

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