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  4. Angular-resolution-improved light field display architecture using polarization dependent deflection metasurface and polarization switching
 
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Angular-resolution-improved light field display architecture using polarization dependent deflection metasurface and polarization switching

Journal
Optics Express
Journal Volume
33
Journal Issue
21
Start Page
43837
ISSN
1094-4087
Date Issued
2025-10-08
Author(s)
Chen, Po-Jui
Wu, Chin-Chuan
Chang, Chi-Jui
Tsai, Cheng-Ting
Lu, Chia-Wei
Cheng, Ko-Ting
Su, Guo-Dung J.
Cheng, Sheng-Wen
Liao, Ren-Wei
Dong, Ren-Lang
Wu, Chung-Chih  
DOI
10.1364/oe.577171
URI
https://www.scopus.com/record/display.uri?eid=2-s2.0-105019249528&origin=resultslist
https://scholars.lib.ntu.edu.tw/handle/123456789/733840
Abstract
High-resolution and accurate view projection are essential for the performance and user experience of advanced autostereoscopic displays. This study presents an angular-resolution-doubled, time-multiplexing autostereoscopic light-field display architecture comprising the highly collimated backlight, the liquid crystal display, and the polarization-switchable pixelated deflection array consisting of a polarization switching device and a polarization-dependent deflection metasurface pixel array. With judicious designs and high-fidelity fabrication of the TiO2 metasurfaces, high deflection accuracies (with angular errors of <0.2°) over the target deflection angle range (18 views over the ∼50° FOV) and polarization-switchable deflection were achieved experimentally for common-thickness R/G/B color sub-pixel metasurfaces. The over-etching was also shown to offer a robust fabrication approach and structure for ensuring high-transmission deflection metasurfaces. Inter-view crosstalk could be suppressed to low levels by adopting highly collimated backlights. A proof-of-concept sample 15 × 15-pixel-group, color four-view time-multiplexing autostereoscopic light-field display integrating all the key concepts and components developed was demonstrated, validating the feasibility of the proposed architecture. The results of this work highlight the potential and benefit of adopting metasurfaces for advanced 3D displays.
Publisher
Optica Publishing Group
Type
journal article

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