Hua Jianyu, Hua Erkai, Zhou Fengbin, Shi Jiacheng, Wang Chinhua, Duan Huigao, Hu Yueqiang, Qiao Wen, Chen Linsen
School of Optoelectronic Science and Engineering & Collaborative Innovation Center of Suzhou Nano Science and Technology, Soochow University, 215006, Suzhou, China.
Key Lab of Advanced Optical Manufacturing Technologies of Jiangsu Province & Key Lab of Modern Optical Technologies of Education Ministry of China, Soochow University, 215006, Suzhou, China.
Light Sci Appl. 2021 Oct 12;10(1):213. doi: 10.1038/s41377-021-00651-1.
Glasses-free three-dimensional (3D) displays are one of the game-changing technologies that will redefine the display industry in portable electronic devices. However, because of the limited resolution in state-of-the-art display panels, current 3D displays suffer from a critical trade-off among the spatial resolution, angular resolution, and viewing angle. Inspired by the so-called spatially variant resolution imaging found in vertebrate eyes, we propose 3D display with spatially variant information density. Stereoscopic experiences with smooth motion parallax are maintained at the central view, while the viewing angle is enlarged at the periphery view. It is enabled by a large-scale 2D-metagrating complex to manipulate dot/linear/rectangular hybrid shaped views. Furthermore, a video rate full-color 3D display with an unprecedented 160° horizontal viewing angle is demonstrated. With thin and light form factors, the proposed 3D system can be integrated with off-the-shelf purchased flat panels, making it promising for applications in portable electronics.
无眼镜三维(3D)显示器是将重新定义便携式电子设备显示行业的变革性技术之一。然而,由于现有显示面板分辨率有限,当前的3D显示器在空间分辨率、角分辨率和视角之间存在关键权衡。受脊椎动物眼睛中所谓空间变化分辨率成像的启发,我们提出了具有空间变化信息密度的3D显示器。在中央视图中保持具有平滑运动视差的立体体验,同时在外围视图中扩大视角。这通过大规模二维超光栅复合体来实现,以操纵点/线/矩形混合形状的视图。此外,还展示了具有前所未有的160°水平视角的视频速率全彩3D显示器。所提出的3D系统具有轻薄的外形尺寸,可以与现成购买的平板集成,使其在便携式电子产品中的应用前景广阔。