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一种可更新的全息三维显示器。

An updatable holographic three-dimensional display.

作者信息

Tay Savaş, Blanche P-A, Voorakaranam R, Tunç A V, Lin W, Rokutanda S, Gu T, Flores D, Wang P, Li G, St Hilaire P, Thomas J, Norwood R A, Yamamoto M, Peyghambarian N

机构信息

College of Optical Sciences, University of Arizona, Tucson, Arizona 85721, USA.

出版信息

Nature. 2008 Feb 7;451(7179):694-8. doi: 10.1038/nature06596.

Abstract

Holographic three-dimensional (3D) displays provide realistic images without the need for special eyewear, making them valuable tools for applications that require situational awareness, such as medical, industrial and military imaging. Currently commercially available holographic 3D displays use photopolymers that lack image-updating capability, resulting in restricted use and high cost. Photorefractive polymers are dynamic holographic recording materials that allow updating of images and have a wide range of applications, including optical correlation, imaging through scattering media and optical communication. To be suitable for 3D displays, photorefractive polymers need to have nearly 100% diffraction efficiency, fast writing time, hours of image persistence, rapid erasure, and large area-a combination of properties that has not been shown before. Here, we report an updatable holographic 3D display based on photorefractive polymers with such properties, capable of recording and displaying new images every few minutes. This is the largest photorefractive 3D display to date (4 x 4 inches in size); it can be recorded within a few minutes, viewed for several hours without the need for refreshing, and can be completely erased and updated with new images when desired.

摘要

全息三维(3D)显示器无需特殊眼镜就能提供逼真的图像,使其成为医疗、工业和军事成像等需要态势感知的应用中的宝贵工具。目前市面上的全息3D显示器使用的光聚合物缺乏图像更新能力,导致其应用受限且成本高昂。光折变聚合物是动态全息记录材料,可实现图像更新,具有广泛应用,包括光学相关、透过散射介质成像和光通信。要适用于3D显示器,光折变聚合物需要具备近100%的衍射效率、快速写入时间、数小时的图像持久性、快速擦除以及大面积——这些特性此前从未同时具备。在此,我们报道了一种基于具有此类特性的光折变聚合物的可更新全息3D显示器,能够每隔几分钟记录并显示新图像。这是迄今为止最大的光折变3D显示器(尺寸为4×4英寸);它可在几分钟内记录完成,无需刷新即可观看数小时,并且在需要时可完全擦除以用新图像更新。

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