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具有不规则多边形孔径和离散相位水平的多路复用计算机生成全息图。

Multiplexed computer-generated holograms with irregular-shaped polygonal apertures and discrete phase levels.

作者信息

Gillet Jean-Numa, Sheng Yunlong

机构信息

Department of Physics, Physics Engineering and Optics, Center for Optics, Photonics and Laser, Université Laval, Québec City, Quebec GCK 7P4, Canada.

出版信息

J Opt Soc Am A Opt Image Sci Vis. 2002 Dec;19(12):2403-13. doi: 10.1364/josaa.19.002403.

Abstract

We propose a novel type of multiplexed computer-generated hologram (MCGH) with irregular-shaped polygonal apertures and discrete phase levels. Each elementary cell forming the new MCGH is divided into a central aperture and several peripheral apertures. The new MCGH allows us to exploit the huge space-bandwidth product provided by standard lithography technologies. With use of the Abbe transform, the Fraunhofer diffraction patterns from the polygonal apertures and, therefore, the layout coefficients can be computed with simple algebraic expressions. Several symmetries related to the polygonal apertures also facilitate the layout-coefficient computation. In the novel iterative subhologram design algorithm (ISDA), we consider all subholograms equally and apply the image-plane constraint to the total reconstructed image, which is the coherent addition of the subimages from the subholograms. We designed MCGHs with several billions of pixels per period, which cannot be achieved with the classical iterative Fourier transform algorithm, because of the prohibitive computational cost and memory limitation. MCGHs with irregular polygonal apertures and discrete phases, which were designed by the ISDA, reconstruct a desired image of large size with high diffraction efficiencies and low reconstruction errors.

摘要

我们提出了一种新型的复用计算机生成全息图(MCGH),其具有不规则形状的多边形孔径和离散相位水平。构成新MCGH的每个基本单元被划分为一个中心孔径和几个周边孔径。这种新的MCGH使我们能够利用标准光刻技术提供的巨大空间带宽积。利用阿贝变换,多边形孔径的夫琅禾费衍射图案以及布局系数可以用简单的代数表达式计算出来。与多边形孔径相关的几种对称性也有助于布局系数的计算。在新颖的迭代子全息图设计算法(ISDA)中,我们平等地考虑所有子全息图,并将像平面约束应用于总重建图像,该总重建图像是子全息图的子图像的相干叠加。我们设计了每周期具有数十亿像素的MCGH,这是经典迭代傅里叶变换算法无法实现的,因为其计算成本过高且内存有限。由ISDA设计的具有不规则多边形孔径和离散相位的MCGH以高衍射效率和低重建误差重建出大尺寸的期望图像。

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