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One-step reconstruction of assembled 3D holographic scenes

机译:组装3D全息场景的一步式重建

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We present a new experimental approach for reconstructing in one step 3D scenes otherwise not feasible in a single snapshot from standard off-axis digital hologram architecture, due to a lack of illuminating resources or a limited setup size. Consequently, whenever a scene could not be wholly illuminated or the size of the scene surpasses the available setup disposition, this protocol can be implemented to solve these issues. We need neither to alter the original setup in every step nor to cover the whole scene by the illuminating source, thus saving resources. With this technique we multiplex the processed holograms of actual diffuse objects composing a scene using a two-beam off-axis holographic setup in a Fresnel approach. By registering individually the holograms of several objects and applying a spatial filtering technique, the filtered Fresnel holograms can then be added to produce a compound hologram. The simultaneous reconstruction of all objects is performed in one step using the same recovering procedure employed for single holograms. Using this technique, we were able to reconstruct, for the first time to our knowledge, a scene by multiplexing off-axis holograms of the 3D objects without cross talk. This technique is important for quantitative visualization of optically packaged multiple images and is useful for a wide range of applications. We present experimental results to support the method. (C) 2015 Elsevier Ltd. All rights reserved.
机译:我们提出了一种新的实验方法,可一步一步重建3D场景,否则由于缺乏照明资源或安装尺寸有限,无法从标准离轴数字全息图架构的单个快照中重建3D场景。因此,无论何时无法完全照亮一个场景或场景的大小超过可用的设置位置,都可以实施此协议来解决这些问题。我们既不需要在每个步骤中更改原始设置,也不需要用光源覆盖整个场景,从而节省了资源。通过这种技术,我们使用菲涅耳方法中的两束离轴全息照相设置技术,对构成场景的实际扩散对象的处理后的全息图进行了多路复用。通过分别注册多个对象的全息图并应用空间滤波技术,可以将经过滤波的菲涅耳全息图相加,以生成复合全息图。使用单个全息图所用的相同恢复步骤,一步完成所有对象的同时重建。使用这种技术,我们能够通过对3D对象的轴外全息图进行多路复用而没有串扰,从而首次据此重建场景。该技术对于光学包装的多个图像的定量可视化非常重要,并且对于广泛的应用很有用。我们提出实验结果以支持该方法。 (C)2015 Elsevier Ltd.保留所有权利。

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