色域
光学
亮度
全息术
体积热力学
RGB颜色模型
栅栏
材料科学
视野
物理
波导管
增强现实
衍射光栅
出瞳
全息显示器
光谱颜色
光电子学
杂散光
色度
体全息图
色差
图层(电子)
作者
Xin Lyu,Tong Yang,Yongdong Wang,Xiaolan Liu,Yongtian Wang,Dewen Cheng
标识
DOI:10.1002/lpor.202502085
摘要
ABSTRACT In this study, we developed and optimized a dual‐layer 2D pupil expansion full‐color volume holographic waveguide (2D‐FVHW) for use in an augmented reality (AR) near‐eye display (NED) system. We designed a dual‐layer structure: one layer features a mixed red‐green grating for the 639 and 532 nm channels, while the other layer is dedicated to the 457 nm blue channel. A novel exposure method utilizing monotonic progressive diffractive efficiency is proposed to address issues related to brightness uniformity and color uniformity. This approach not only enhances brightness and color uniformity but also significantly reduces both preparation time and costs. The fabricated 2D‐FVHW exhibits a horizontal field of view of (FOV) 19, a vertical FOV of 21, and a diagonal FOV of 28, with an eyebox size of 14 16 mm and an eye relief of 15 mm. The system demonstrates excellent performance in terms of brightness and color uniformity, achieving a full FOV white light brightness uniformity of 53.9%. Additionally, its color gamut encompasses nearly 100% of the sRGB color gamut, making it a promising solution for high‐performance AR displays. Meanwhile, we provides a detailed analysis of the stray light phenomenon in the 2D‐FVHW, with experimental results showing strong alignment with simulations.
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