Opt Express. 2021 Apr 12;29(8):11613-11626. doi: 10.1364/OE.421158.
The Maxwellian display presents always-focused images to the viewer, alleviating the vergence-accommodation conflict (VAC) in near-eye displays (NEDs). However, the limited eyebox of the typical Maxwellian display prevents it from wider applications. We propose a Maxwellian see-through NED based on a multiplexed holographic optical element (HOE) and polarization gratings (PGs) to extend the eyebox by viewpoint multiplication. The multiplexed HOE functions as multiple convex lenses to form multiple viewpoints, which are copied to different locations by PGs. To mitigate the imaging problem that multiple viewpoints or no viewpoints enter the eye pupil, the viewpoints can be tuned by mechanically moving a PG. We implement our method in a proof-of-concept system. The optical experiments confirm that the proposed display system provides always in-focus images within a 12 mm eyebox in the horizontal direction with a 32.7° diagonal field of view (FOV) and a 16.5 mm eye relief (ERF), and its viewpoints are tunable to match the actual eye pupil size. Compared with other techniques to extend the eyebox of Maxwellian displays, the proposed method shows competitive performances of a large eyebox, adaptability to the eye pupil size, and focus cues within a large depth range.
麦克斯韦尔显示为观看者呈现始终聚焦的图像,缓解了近眼显示器 (NED) 中的聚散调节冲突 (VAC)。然而,典型的麦克斯韦尔显示器的有限眼盒限制了其更广泛的应用。我们提出了一种基于复用全息光学元件 (HOE) 和偏振光栅 (PG) 的麦克斯韦尔透视 NED,通过视点倍增来扩展眼盒。复用 HOE 作为多个凸透镜形成多个视点,通过 PG 将这些视点复制到不同的位置。为了减轻多个视点或无视点进入瞳孔的成像问题,可以通过机械移动 PG 来调整视点。我们在概念验证系统中实现了我们的方法。光学实验证实,所提出的显示系统在 12mm 的水平眼盒内提供始终聚焦的图像,水平视场为 32.7°,眼距为 16.5mm,并且视点可调以匹配实际瞳孔尺寸。与其他扩展麦克斯韦尔显示器眼盒的技术相比,所提出的方法在大眼盒、对瞳孔尺寸的适应性以及大景深范围内的聚焦提示方面具有竞争力。