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Nonlocal polymerization-driven diffusion-model-based examination of the scaling law for holographic data storage

机译:基于非局部聚合驱动扩散模型的全息数据存储缩放比例检验

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摘要

For the first time to our knowledge, a detailed theoretical basis is provided for the well-known inverse-square scaling law of holographic diffraction, which states that replay diffraction efficiency η=Γ/M~(2), where M is the number of gratings stored and Γ is a constant system parameter. This law is shown to hold for photopolymer recording media governed by the predictions of the nonlocal polymerization-driven diffusion model. On the basis of the analysis, we (i) propose a media inverse scaling law, (ii) relate Γ to photopolymer material parameters and the hologram geometry and replay conditions, and (iii) comment on the form and validity of the diffraction efficiency inverse-square scaling law for higher-diffraction-efficiency gratings.
机译:据我们所知,这是首次为全息衍射的平方反比定律提供详细的理论基础,该定律表明重放衍射效率η=Γ/ M〜(2),其中M是存储的光栅,Γ是一个恒定的系统参数。对于由非局部聚合驱动的扩散模型的预测控制的光聚合物记录介质,该定律适用。在分析的基础上,我们(i)提出了一种介质反比例定律,(ii)将Γ与光敏聚合物材料参数以及全息图的几何形状和重放条件相关,并且(iii)对衍射效率反函数的形式和有效性进行了评论高衍射效率光栅的平方定律。

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