Literature DB >> 31878491

Demonstration of a low-crosstalk super multi-view light field display with natural depth cues and smooth motion parallax.

Peiren Wang, Xinzhu Sang, Xunbo Yu, Xin Gao, Binbin Yan, Boyang Liu, Li Liu, Chao Gao, Yang Le, Yuanhang Li, Jingyan Du.   

Abstract

Due to lack of the accommodation stimulus, an inherent drawback for the conventional glasses-free stereoscopic display is that precise depth cues for the human monocular vision is rent, which results in the well-known convergence-accommodation conflict for the human visual system. Here, a super multi-view light field display with the vertically-collimated programmable directional backlight (VC-PDB) and the light control module (LCM) is demonstrated. The VC-PDB and the LCM are used to form the super multi-view light field display with low crosstalk, which can provide precisely detectable accommodation depth for human monocular vision. Meanwhile, the VC-PDB cooperates with the refreshable liquid-crystal display panel to provide the convergence depth matching the accommodation depth. In addition, the proposed method of light field pick-up and reconstruction is implemented to ensure the perceived three dimensional (3D) images with accurate depth cues and correct geometric occlusion, and the eye tracker is used to enlarge the viewing angle of 3D images with smooth motion parallax. In the experiments, the reconstructed high quality fatigue-free 3D images can be perceived with the clear focus depth of 13 cm in the viewing angle of ± 20°, where 352 viewpoints with the viewpoint density of 1 mm-1 and the crosstalk of less than 6% are presented.

Entities:  

Year:  2019        PMID: 31878491     DOI: 10.1364/OE.27.034442

Source DB:  PubMed          Journal:  Opt Express        ISSN: 1094-4087            Impact factor:   3.894


  1 in total

1.  Fatigue-free visual perception of high-density super-multiview augmented reality images.

Authors:  Sungjin Lim; Hosung Jeon; Minwoo Jung; Chulwoong Lee; Woonchan Moon; Kwangsoo Kim; Hwi Kim; Joonku Hahn
Journal:  Sci Rep       Date:  2022-02-22       Impact factor: 4.379

  1 in total

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