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通过基于多边形的方法创建的超高清全视差计算机生成全息图。

Extremely high-definition full-parallax computer-generated hologram created by the polygon-based method.

作者信息

Matsushima Kyoji, Nakahara Sumio

机构信息

Department of Electrical and Electronic Engineering, Kansai University, Yamate-cho 3-3-35, Suita, Osaka 564-8680, Japan.

出版信息

Appl Opt. 2009 Dec 1;48(34):H54-63. doi: 10.1364/AO.48.000H54.

Abstract

A large-scale full-parallax computer-generated hologram (CGH) with four billion (2(16) x 2(16)) pixels is created to reconstruct a fine true 3D image of a scene, with occlusions. The polygon-based method numerically generates the object field of a surface object, whose shape is provided by a set of vertex data of polygonal facets, while the silhouette method makes it possible to reconstruct the occluded scene. A novel technique using the segmented frame buffer is presented for handling and propagating large wave fields even in the case where the whole wave field cannot be stored in memory. We demonstrate that the full-parallax CGH, calculated by the proposed method and fabricated by a laser lithography system, reconstructs a fine 3D image accompanied by a strong sensation of depth.

摘要

创建了一个具有40亿(2的16次方×2的16次方)像素的大规模全视差计算机生成全息图(CGH),以重建带有遮挡的场景的精细真实3D图像。基于多边形的方法通过数值生成表面物体的物场,该物体的形状由一组多边形小面的顶点数据提供,而轮廓法使得重建被遮挡的场景成为可能。提出了一种使用分段帧缓冲器的新技术,即使在整个波场无法存储在内存中的情况下,也能处理和传播大波场。我们证明,通过所提出的方法计算并由激光光刻系统制造的全视差CGH能够重建出具有强烈深度感的精细3D图像。

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