DocumentCode
78689
Title
Low Cell Gap Polymeric Liquid Crystal Lens for 2-D/3-D Switchable Auto-Stereoscopic Display
Author
Byung-June Mun ; Ji-Ho Baek ; Joun Ho Lee ; Byeong Koo Kim ; Hyun Chul Choi ; Jae-hoon Kim ; Gi-Dong Lee
Author_Institution
Dept. of Electron. Eng., Dong-A Univ., Busan, South Korea
Volume
60
Issue
10
fYear
2013
fDate
Oct. 2013
Firstpage
3430
Lastpage
3434
Abstract
We propose a planar polymeric liquid crystal (LC) lens with a low cell gap (~ 4.6 μm) for a 2-D/3-D switchable auto-stereoscopic display. The proposed lens consists of two LC layers, one is a photopolymerized LC lens layer with a non-uniform refractive index with parabolic curve distribution, and the other is a half-wave LC switching layer of the vertical alignment type, which performs the 2-D/3-D image switching. The optimized refractive index of the LC lens layer was simply realized by polymerizing the LC molecules using a reactive mesogen. The proposed LC lens allow fast 2-D/3-D switching with low voltage and a simple fabrication process because of a low cell gap of the switching layer. We verified the electro-optical characteristics of the proposed LC lens by fabricating each layer after optimizing the cell structure. The measured focal length as a function of the applied voltage in the 3-D mode was compared with the calculated focal length and we confirmed that the measured results agreed with the calculated results.
Keywords
lenses; liquid crystal polymers; refractive index; three-dimensional displays; 2-D switchable auto-stereoscopic display; 3-D switchable auto-stereoscopic display; LC molecules; electro-optical characteristics; half-wave LC switching layer; image switching; low cell gap polymeric liquid crystal lens; nonuniform refractive index; parabolic curve distribution; photopolymerized LC lens layer; planar polymeric liquid crystal lens; polymerization; reactive mesogen; Lenses; Optical switches; Polymers; Refractive index; Three-dimensional displays; Two dimensional displays; 2-D/3-D switching mode; effective refractive index; focal length; low cell gap; planar polymeric liquid crystal (PPLC) lens;
fLanguage
English
Journal_Title
Electron Devices, IEEE Transactions on
Publisher
ieee
ISSN
0018-9383
Type
jour
DOI
10.1109/TED.2013.2275001
Filename
6576886
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