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用于增强现实的无像差光瞳可控麦克斯韦显示器,采用胆甾相液晶全息透镜。

Aberration-free pupil steerable Maxwellian display for augmented reality with cholesteric liquid crystal holographic lenses.

作者信息

Xiong Jianghao, Li Yannanqi, Li Kun, Wu Shin-Tson

出版信息

Opt Lett. 2021 Apr 1;46(7):1760-1763. doi: 10.1364/OL.422559.

Abstract

Maxwellian displays offer unique features like always-in-focus quality, high efficiency, and large field-of-view, but its small eyebox remains a major challenge for augmented reality. To enlarge the eyebox, pupil steering is a promising approach. However, previous pupil steering methods generally rely on changing the incident light angle on the lens coupler, which results in serious aberrations. In this Letter, we demonstrate a pupil steerable see-through Maxwellian display incorporating novel cholesteric liquid crystal (CLC) holographic lenses. By actively modulating the polarization state of the incident light, we can schematically choose which holographic lens to function, which fundamentally eliminates the aberrations.

摘要

麦克斯韦显示器具有诸如始终聚焦质量、高效率和大视场等独特特性,但其较小的眼盒仍然是增强现实的一个主要挑战。为了扩大眼盒,瞳孔转向是一种很有前景的方法。然而,以前的瞳孔转向方法通常依赖于改变透镜耦合器上的入射光角度,这会导致严重的像差。在本信函中,我们展示了一种采用新型胆甾相液晶(CLC)全息透镜的可瞳孔转向的透视麦克斯韦显示器。通过主动调制入射光的偏振态,我们可以示意性地选择哪个全息透镜起作用,这从根本上消除了像差。

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