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基于优化体像素尺寸的用于电子散斑干涉立体图的视图翻转效应降低与重建可视化增强

View-flipping effect reduction and reconstruction visualization enhancement for EPISM based holographic stereogram with optimized hogel size.

作者信息

Yan Xingpeng, Zhang Teng, Wang Chenqing, Liu Yunpeng, Wang Ziqiang, Wang Xi, Zhang Zhe, Lin Min, Jiang Xiaoyu

机构信息

Department of Information Communication, Academy of Army Armored Forces, Beijing, 100072, China.

Department of Basic Military and Political Education, Academy of Army Armored Forces, Beijing, 100072, China.

出版信息

Sci Rep. 2020 Aug 10;10(1):13492. doi: 10.1038/s41598-020-70256-y.

Abstract

To reduce the view-flipping effect and enhance the viewing resolution, the modulation characteristics of the hogel based holographic stereogram is constructed and validated. The performance of the view-flipping effect is analyzed, and the results indicate that decreasing the size of hogel is beneficial to the reduction of the view flipping, however, which will result in significant diffraction effect which can degrade the reconstruction quality. Furthermore, a diffraction-limited imaging model of the hogel based holographic stereogram is established, where both the limited aperture of the hogel and the defocused aberration of the object point are introduced, and the effective resolvable size of the reconstructed image point is simulated. The theory shows that there is an optimal hogel size existed for the certain depth of scene. Both the numerical and optical experiments are implemented, and the results are well agreed with the theoretical prediction, which demonstrates that the view-flipping reduction and reconstruction visualization enhancement for EPISM based holographic stereogram can be achieved when the proper size of hogel is utilized.

摘要

为了减少视图翻转效应并提高观看分辨率,构建并验证了基于体像素的全息立体图的调制特性。分析了视图翻转效应的性能,结果表明减小体像素尺寸有利于减少视图翻转,然而,这将导致显著的衍射效应,从而降低重建质量。此外,建立了基于体像素的全息立体图的衍射极限成像模型,其中引入了体像素的有限孔径和物点的离焦像差,并模拟了重建像点的有效可分辨尺寸。理论表明,对于特定的场景深度存在一个最佳体像素尺寸。进行了数值和光学实验,结果与理论预测吻合良好,这表明当使用合适尺寸的体像素时,可以实现基于扩展相位图像合成显微镜(EPISM)的全息立体图的视图翻转减少和重建可视化增强。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/719e/7417599/ec47c6b444bb/41598_2020_70256_Fig1_HTML.jpg

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