Sheridan J T, Gleeson M R, Close C E, Kelly J V
UCD School of Electrical, Electronic and Mechanical Engineering, College of Engineering, Mathematics and Physical Sciences, University College Dublin, National University of Ireland, Belfield, Dublin D-4, Ireland.
J Nanosci Nanotechnol. 2007 Jan;7(1):232-42.
We briefly review the application of photopolymer recording materials in the area of holographic data storage. In particular we discuss the recent development of the Non-local Polymerisation Driven Diffusion model. Applying this model we develop simple first-order analytic expressions describing the spatial frequency response of photopolymer materials. The assumptions made in the derivation of these formulae are described and their ranges of validity are examined. The effects of particular physical parameters of a photopolymer on the material response are discussed.
我们简要回顾光聚合物记录材料在全息数据存储领域的应用。特别地,我们讨论非局部聚合驱动扩散模型的最新进展。应用该模型,我们推导出描述光聚合物材料空间频率响应的简单一阶解析表达式。阐述了这些公式推导过程中所做的假设,并考察了其有效范围。讨论了光聚合物特定物理参数对材料响应的影响。