Two way diffusion model for the recording mechanism in a self developing dry acrylamide photopolymer

S. Martin, I. Naydenova, J. Raghavendra, R. Howard, V. Toal
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引用次数: 17

Abstract

In our most recent study diffusion constants were measured in the simplified monoacrylamide version of a dry acrylamide based photopolymer holographic recording material developed in the Centre for Industrial and Engineering Optics. In this paper we report diffusion constants for the commonly used photopolymer formulation, which also contains the crosslinker bisacrylamide. A physical model for the recording mechanism is proposed which explains the two way diffusion observed in both systems, and is in agreement with much of the previously observed behaviour of the material, particularly in regard to dependence of diffraction efficiency growth on spatial frequency and persistence of holographic gratings under uniform exposure. The model is also supported by direct observation, under a surface profiler, of the boundary between an illuminated and un-illuminated area at the photopolymer surface.
自研干型丙烯酰胺光聚合物记录机理的双向扩散模型
在我们最近的研究中,扩散常数是在工业和工程光学中心开发的一种干燥的基于丙烯酰胺的光聚合物全息记录材料的简化单丙烯酰胺版本中测量的。本文报道了含有交联剂双丙烯酰胺的常用光聚合物配方的扩散常数。提出了记录机制的物理模型,该模型解释了在两种系统中观察到的双向扩散,并且与先前观察到的材料的许多行为一致,特别是关于衍射效率增长对空间频率的依赖和均匀曝光下全息光栅的持久性。该模型还得到了直接观测的支持,在表面剖面仪下,在光聚合物表面照明和未照明区域之间的边界。
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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