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用于虚拟现实显示器的消色差衍射液晶光学器件。

Achromatic diffractive liquid-crystal optics for virtual reality displays.

作者信息

Luo Zhenyi, Li Yannanqi, Semmen John, Rao Yi, Wu Shin-Tson

机构信息

College of Optics and Photonics, University of Central Florida, Orlando, FL, 32816, USA.

Goertek Electronics, 5451 Great America Parkway, Suite 301, Santa Clara, CA, 95054, USA.

出版信息

Light Sci Appl. 2023 Sep 15;12(1):230. doi: 10.1038/s41377-023-01254-8.

Abstract

Diffractive liquid-crystal optics is a promising optical element for virtual reality (VR) and mixed reality as it provides an ultrathin formfactor and lightweight for human factors and ergonomics. However, its severe chromatic aberrations impose a big challenge for full-color display applications. In this study, we demonstrate an achromatic diffractive liquid-crystal device to overcome this longstanding chromatic aberration issue. The proposed device consists of three stacked diffractive liquid crystal optical elements with specifically designed spectral response and polarization selectivity. The concept is validated by both simulations and experiments. Our experimental results show a significant improvement in imaging performance with two types of light engines: a laser projector and an organic light-emitting diode display panel. In addition, our simulation results indicate that the lateral color shift is reduced by ~100 times in comparison with conventional broadband diffractive liquid-crystal lens. Potential applications for VR-enabled metaverse, spatial computing, and digital twins that have found widespread applications in smart tourism, smart education, smart healthcare, smart manufacturing, and smart construction are foreseeable.

摘要

衍射液晶光学器件是一种很有前途的用于虚拟现实(VR)和混合现实的光学元件,因为它为人体工程学提供了超薄的外形尺寸和轻重量。然而,其严重的色差给全彩显示应用带来了巨大挑战。在本研究中,我们展示了一种消色差衍射液晶器件,以克服这一长期存在的色差问题。所提出的器件由三个堆叠的衍射液晶光学元件组成,具有专门设计的光谱响应和偏振选择性。该概念通过模拟和实验得到了验证。我们的实验结果表明,在使用两种类型的光引擎(激光投影仪和有机发光二极管显示面板)时,成像性能有了显著提高。此外,我们的模拟结果表明,与传统的宽带衍射液晶透镜相比,横向色移减少了约100倍。具有VR功能的元宇宙、空间计算和数字孪生在智能旅游、智能教育、智能医疗、智能制造和智能建筑中得到广泛应用的潜在应用是可预见的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/299c/10504380/62b84f86c8ac/41377_2023_1254_Fig1_HTML.jpg

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