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用于纵向图像放大和瞳孔扩张的全息波导平视显示器。

Holographic waveguide heads-up display for longitudinal image magnification and pupil expansion.

作者信息

Bigler Colton M, Blanche Pierre-Alexandre, Sarma Kalluri

出版信息

Appl Opt. 2018 Mar 20;57(9):2007-2013. doi: 10.1364/AO.57.002007.

Abstract

The field of view of traditional heads-up display systems is limited by the size of the projection optics. Our research is focused on overcoming this limitation by coupling image-bearing light into a waveguide using holographic elements, propagating the light through that waveguide, and extracting the light several times with additional holographic optical elements. With this configuration, we demonstrated both longitudinal magnification and pupil expansion of the heads-up display. We created a ray-trace model of the optical system to optimize the component parameters and implemented the solution in a prototype that demonstrates the merit of our approach. Longitudinal magnification is achieved by encoding optical power into the hologram injecting the light into the waveguide, while pupil expansion is obtained by expanding the size of the hologram extracting the light from the waveguide element. To ensure uniform intensity of the image, the diffraction efficiency of the extracting hologram is modulated according to the position. Our design has a 12°×8° field of view at a viewing distance of 10 in. (250 mm), with infinite longitudinal magnification and a 1.7× lateral pupil expansion.

摘要

传统平视显示系统的视场受投影光学器件尺寸的限制。我们的研究重点是通过使用全息元件将承载图像的光耦合到波导中,使光在该波导中传播,并使用额外的全息光学元件多次提取光来克服这一限制。通过这种配置,我们展示了平视显示器的纵向放大率和光瞳扩展。我们创建了光学系统的光线追踪模型以优化组件参数,并在一个原型中实现了该解决方案,该原型展示了我们方法的优点。纵向放大率是通过将光焦度编码到全息图中并将光注入波导来实现的,而光瞳扩展则是通过扩大从波导元件中提取光的全息图尺寸来实现的。为确保图像强度均匀,根据位置调制提取全息图的衍射效率。我们的设计在10英寸(250毫米)的观察距离下具有12°×8°的视场,具有无限的纵向放大率和1.7倍的横向光瞳扩展。

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