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Fast-switching laterally virtual-moving microlens array for enhancing spatial resolution in light-field imaging system without degradation of angular sampling resolution

机译:快速切换的横向虚拟移动微透镜阵列可在不降低角度采样分辨率的情况下提高光场成像系统中的空间分辨率

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摘要

We present an electrically controllable fast-switching virtual-moving microlens array (MLA) consisting of a stacked structure of two polarization-dependent microlens arrays (PDMLAs) with optical orthogonality, where the position of the two stacked PDMLAs is shifted by half the elemental pitch in the diagonal direction. By controlling the polarization of the incident light without the physical movement of the molecules comprising the virtual-moving MLA, the periodic sampling position of the MLA can be switched fast using a polarization-switching layer based on a fast-switching liquid crystal cell. Using the fast-switching virtual-moving MLA, the spatial-resolution-enhanced light-field (LF) imaging system was demonstrated without a decrease in the angular sampling resolution as compared to the conventional LF imaging system comprising a passive MLA; two sets of elemental image arrays were captured quickly owing to the short switching time of the virtual-moving MLA of 450 μs. From the two captured sets of the elemental array image, four-times resolution-enhanced reconstruction images of the directional-view and depth-slice images could be obtained.
机译:我们提出了一种电可控的快速切换虚拟移动微透镜阵列(MLA),该阵列由两个具有光学正交性的偏振相关微透镜阵列(PDMLA)的堆叠结构组成,其中两个堆叠PDMLA的位置偏移了元素间距的一半在对角线方向。通过控制入射光的偏振而不使包括虚拟运动的MLA的分子发生物理运动,可以使用基于快速切换液晶单元的偏振切换层来快速切换MLA的周期性采样位置。与包括无源MLA的传统LF成像系统相比,使用快速切换的虚拟移动MLA,展示了空间分辨率增强的光场(LF)成像系统,而不会降低角度采样分辨率。由于虚拟运动MLA的切换时间仅为450μs,因此可以快速捕获两组基本图像阵列。从捕获的两组元素阵列图像中,可以获得四倍分辨率增强的方向视图和深度切片图像。

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