Zero Spatial Frequency Limit: Method to Characterize Photopolymers as Optical Recording Material

S. Gallego, A. Márquez, M. Ortuño, C. Neipp, I. Pascual, A. Beléndez
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引用次数: 5

Abstract

Photopolymers are useful for different holographic applications such as holographic data storage or diffractive optical elements. However, due to the presence of two different phenomena, polymer formation and monomer diffusion, it is difficult to characterize each parameter independently. We propose a direct method based on zero spatial frequency recording, to eliminate the diffusion influence, and on interferometric techniques, both in transmission and in reflection, to obtain quantitative values of shrinkage, polymerization rate, polymer refractive index and relation between intensity and polymerization, and so forth, This method has been implemented in the Holography and Optical Processing Group from the University of Alicante to characterize different photopolymers. In this paper, we present a compilation of the results obtained with this method for different photopolymers and we compare their characteristics.
零空间频率限制:表征光聚合物作为光记录材料的方法
光聚合物可用于不同的全息应用,如全息数据存储或衍射光学元件。然而,由于存在两种不同的现象,聚合物形成和单体扩散,很难单独表征每个参数。我们提出了一种基于零空间频率记录的直接方法,以消除扩散影响,并在透射和反射干涉技术的基础上,获得收缩率,聚合速率,聚合物折射率以及强度与聚合之间的关系等定量值,该方法已在阿利坎特大学全息和光学处理小组中实现,用于表征不同的光聚合物。在本文中,我们介绍了用这种方法获得的不同光聚合物的结果汇编,并比较了它们的特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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