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Analysis and simulations of two-wave mixing in photopolymer holographic recording media

机译:光聚合物全息记录介质中两波混合的分析和模拟

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The process of two-wave mixing in photopolymer recording materials was investigated theoretically. The diffraction grating already forms during exposition and it may influence the original interference field distribution through diffraction of waves on the refractive index modulation. In order to show this, Kogelnik's coupled wave theory was extended to demonstrate the possibility of energy transfer from one recording wave to the other. The energy transfer and the intensity distribution during the recording process were systematically analysed depending on the boundary conditions. As a next step, the first harmonic model of the transmission grating recording, based on a simple material model, was implemented and solved. The ratio of the input intensities was found to be a crucial parameter and thus extensive simulations for various ratios of intensities were carried out. Modelling implies that the interference field and the refractive index grating just coincide for equal intensities. For intensities differing from unity they do not overlap themselves during the recording process. It has also turned out that the diffraction efficiency of the recorded grating drops against the case where the effects of two-wave mixing are not considered. The results of our analysis and simulation help give a better understanding of the physics of the recording process and proper adjustment of recording parameters in such applications as optical holography and holographic memories.
机译:从理论上研究了光聚合物记录材料中两波混合的过程。衍射光栅在曝光过程中已经形成,并且可能通过折射率调制上的波衍射影响原始干涉场分布。为了证明这一点,对Kogelnik的耦合波理论进行了扩展,以证明能量从一个记录波转移到另一个记录波的可能性。根据边界条件,系统地分析了记录过程中的能量转移和强度分布。下一步,基于简单的材料模型,实现并解决了透射光栅记录的一次谐波模型。发现输入强度的比率是关键参数,因此对各种强度比率进行了广泛的模拟。建模意味着干涉场和折射率光栅在强度相等时恰好重合。对于不同于单位的强度,它们在记录过程中不会重叠。还已经证明,与不考虑两波混合的影响的情况相比,所记录的光栅的衍射效率下降。我们的分析和模拟结果有助于更好地了解记录过程的物理原理,并在光学全息和全息存储器等应用中适当调整记录参数。

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