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Wigner analysis of three dimensional pupil with finite lateral aperture

机译:有限侧向孔径的三维瞳孔的Wigner分析

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摘要

A three dimensional (3D) pupil is an optical element, most commonly implemented on a volume hologram, that processes the incident optical field on a 3D fashion. Here we analyze the diffraction properties of a 3D pupil with finite lateral aperture in the 4-f imaging system configuration, using the Wigner Distribution Function (WDF) formulation. Since 3D imaging pupil is finite in both lateral and longitudinal directions, the WDF of the volume holographic 4-f imager theoretically predicts distinct Bragg diffraction patterns in phase space. These result in asymmetric profiles of diffracted coherent point spread function between degenerate diffraction and Bragg diffraction, elucidating the fundamental performance of volume holographic imaging. Experimental measurements are also presented, confirming the theoretical predictions.
机译:三维(3D)瞳孔是一种光学元素,最常在体积全息图上实现,它以3D方式处理入射光场。在这里,我们使用Wigner分布函数(WDF)公式分析了在4-f成像系统配置中具有有限横向孔径的3D瞳孔的衍射特性。由于3D成像光瞳在横向和纵向上都是有限的,因此体积全息4-f成像器的WDF理论上可预测相空间中不同的布拉格衍射图样。这些导致简并衍射和布拉格衍射之间衍射相干点扩展函数的不对称分布,从而阐明了体积全息成像的基本性能。还提供了实验测量结果,证实了理论预测。

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