Zhang Yan, Hu Xiaodan, Kiyokawa Kiyoshi, Isoyama Naoya, Sakata Nobuchika, Hua Hong
Opt Lett. 2021 Sep 1;46(17):4208-4211. doi: 10.1364/OL.428714.
Optical see-through head-mounted displays are actively developed in recent years. An appropriate method for mutual occlusion is essential to provide a decent user experience in many application scenarios of augmented reality. However, existing mutual occlusion methods fail to work well with a large field of view (FOV). In this Letter, we propose a double-parabolic-mirror structure that renders hard-edge occlusion within a wide FOV. The parabolic mirror increases the numerical aperture of the system significantly, and the usage of paired parabolic mirrors eliminates most optical aberrations. A liquid crystal on silicon device is introduced as the spatial light modulator for imaging a bright see-through view and rendering sharp occlusion patterns. A loop structure is built to eliminate vertical parallax. The system is designed to obtain a maximum monocular FOV of 114×95 with hard-edge occlusion, and a FOV of 83.5×53.1 is demonstrated with our bench-top prototype.
近年来,光学透视头戴式显示器得到了积极的发展。在许多增强现实应用场景中,一种合适的相互遮挡方法对于提供良好的用户体验至关重要。然而,现有的相互遮挡方法在大视场(FOV)下效果不佳。在本信函中,我们提出了一种双抛物面镜结构,该结构可在宽视场内实现硬边遮挡。抛物面镜显著增加了系统的数值孔径,并且成对抛物面镜的使用消除了大部分光学像差。引入了硅基液晶器件作为空间光调制器,用于成像明亮的透视视图并呈现清晰的遮挡图案。构建了一个环路结构以消除垂直视差。该系统设计为在硬边遮挡下获得最大单眼视场为114×95,并且我们的台式原型展示了83.5×53.1的视场。