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High resolution integral imaging display by using a microstructure array

机译:使用微结构阵列的高分辨率积分成像显示

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摘要

A novel integral imaging method that can be used to display three-dimensional (3D) images with high resolution is proposed. The integral imaging system consists of a delicate microstructure array and microlens array. The microstructure array displays the information of the microimage array. Due to the application of the delicate microstructure array, a large number of efficiency pixels in the microimage array are regularly imaged through the microlens array, which will result in the 3D images with high resolution. In this paper, the relationships among the resolution of the 3D images, the focal length of the microlens, microstructure array/microlens array distance, and the feature size of the microstructure array are analyzed theoretically based on optical design theories. Related experiments are performed. The microstructure array with 1 mu m feature size is fabricated by the lithographic method and applied on the integral imaging system, which forms the 3D images with the resolution of 10 lines/mm. Compared with a traditional integral imaging system, the resolution of the 3D images generated by the method is effectively enhanced. It is inferred that the method has great potential for static 3D displays such as 3D photographs, 3D advertisements, and so on. (c) 2019 Optical Society of America.
机译:该文提出一种可用于显示高分辨率三维(3D)图像的新型积分成像方法。整体成像系统由精密的微结构阵列和微透镜阵列组成。微观结构阵列显示显微图像阵列的信息。由于微观结构阵列的精细应用,微图像阵列中的大量效率像素通过微透镜阵列有规律地成像,从而产生高分辨率的三维图像。本文基于光学设计理论,从理论上分析了三维图像分辨率、微透镜焦距、微结构阵列/微透镜阵列距离与微结构阵列特征尺寸之间的关系。进行相关实验。采用光刻法制备了特征尺寸为1 μ m的微观结构阵列,并应用于整体成像系统,形成分辨率为10线/mm的三维图像。与传统的积分成像系统相比,该方法有效提高了生成的3D图像的分辨率。由此推断,该方法在静态3D显示(如3D照片、3D广告等)中具有很大的潜力。(c) 2019 年美国光学学会。

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