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Simulations and experiments of aperiodic and multiplexed gratings in volume holographic imaging systems

机译:体全息成像系统中非周期性和多重光栅的仿真和实验

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摘要

A new methodology describing the effects of aperiodic and multiplexed gratings in volume holographic imaging systems (VHIS) is presented. The aperiodic gratings are treated as an ensemble of localized planar gratings using coupled wave methods in conjunction with sequential and non-sequential ray-tracing techniques to accurately predict volumetric diffraction effects in VHIS. Our approach can be applied to aperiodic, multiplexed gratings and used to theoretically predict the performance of multiplexed volume holographic gratings within a volume hologram for VHIS. We present simulation and experimental results for the aperiodic and multiplexed imaging gratings formed in PQ-PMMA at 488nm and probed with a spherical wave at 633nm. Simulation results based on our approach that can be easily implemented in ray-tracing packages such as Zemax® are confirmed with experiments and show proof of consistency and usefulness of the proposed models.
机译:提出了一种新的方法,描述了非周期性和多重光栅在体积全息成像系统(VHIS)中的作用。使用耦合波方法结合顺序和非顺序光线跟踪技术将非周期性光栅视为局部平面光栅的整体,以准确预测VHIS中的体积衍射效应。我们的方法可以应用于非周期性的多路复用光栅,并且可以用于理论上预测VHIS的体积全息图中多路复用体全息光栅的性能。我们提供了在488nm处在PQ-PMMA中形成并在633nm处用球面波探测的非周期性和多路复用成像光栅的仿真和实验结果。实验证明了基于我们的方法的模拟结果,该方法可以轻松地在光线跟踪程序包(例如Zemax ®)中实现,并证明了所提出模型的一致性和实用性。

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