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Analysis of the Imaging Characteristics of Holographic Waveguides Recorded in Photopolymers

机译:光聚合物中记录全息波导的成像特性分析

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摘要

In this work, we study the imaging characteristics of an optical see-through display based on a holographic waveguide. To fabricate this device, two transmission holograms are recorded on a photopolymer material attached to a glass substrate. The role of the holograms is to couple the incident light between air and the glass substrate, accomplishing total internal reflection. The role of noise reflection gratings and shrinkage on the imaging characteristics of the device will be also explored. The holograms (slanted transmission gratings with a spatial frequency of 1690 lines/mm) were recorded on a polyvinyl alcohol acrylamide holographic polymer dispersed liquid crystal (HPDLC) material. We will show that sufficient refractive index modulation is achieved in the material, in order to obtain high diffraction efficiencies. We will demonstrate that the final device acts as an image formation system.
机译:在这项工作中,我们基于全息波导研究光透视显示的成像特性。为了制造该装置,将两个传输全息图记录在连接到玻璃基板上的光聚合物材料上。全息图的作用是将入射光与玻璃基板之间的入射光耦合,完成全内反射。还探讨了噪声反射光栅和收缩对设备的成像特性的作用。在聚乙烯醇丙烯酰胺全息聚合物分散的液晶(HPDLC)材料上记录全息图(具有1690线/ mm的空间/ mm的空间频率的倾斜传输光栅。我们将表明,在材料中实现了足够的折射率调制,以获得高衍射效率。我们将证明最终设备充当图像形成系统。

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