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Compact simple dynamic holographic devices based on pattern-aligned liquid crystal micro-structures  ( SCI-EXPANDED收录 EI收录)  

文献类型:期刊文献

英文题名:Compact simple dynamic holographic devices based on pattern-aligned liquid crystal micro-structures

作者:Guo, Li[1,2];Bu, Yifan[2];Gao, Peng[2];Zhao, Hongbo[2];Wu, Youxin[2];Shen, Dong[2];Wang, Xiaoqian[2];Zheng, Zhi-gang[1,2]

机构:[1]East China Univ Sci & Technol, Sch Informat Sci & Engn, Shanghai, Peoples R China;[2]East China Univ Sci & Technol, Sch Phys, Shanghai, Peoples R China

年份:2025

卷号:64

期号:33

起止页码:10118

外文期刊名:APPLIED OPTICS

收录:;EI(收录号:20254819603493);WOS:【SCI-EXPANDED(收录号:WOS:001625220800008)】;

基金:National Key Research and Development Program of China (2022YFA1203700) ; National Natural Science Foundation of China (62275081, 62035008, 61822504, 51873060, 52272109, 11874026) ; Shanghai Municipal Education Commission (202101070002E00107) ; "Shuguang Program" of Shanghai Education Development Foundation and Shanghai Municipal Education Commission (21SG29) ; Undergraduate Training Program on Innovation and Entrepreneurship grant (S202510251176) .

语种:英文

外文关键词:Digital devices - Holographic displays - Inverse problems - Inverse transforms - Liquid crystals - Optical signal processing

摘要:Holographic display has received extensive attention in recent years due to its unique display characteristics. With the discovery of the geometric phase, liquid crystal (LC) devices made by utilizing its excellent property that the phase modulation is independent of the optical path are compact and efficient, providing what we believe to be a new solution for miniaturized holographic devices. In this paper, we demonstrate dynamic holographic devices based on pattern-aligned LC micro-structures, featuring compact sizes and simple electronic driving circuits. The theoretical part of this work is based on the fast Fourier transform and uses self-written code for numerical calculations, which is the calculation and simulation of the two-dimensional light intensity distributions and propagation paths of Fresnel diffraction with arbitrary geometric phase distributions. The geometric phase distribution of the diffractive optical element corresponding to an arbitrary holographic pattern is obtained through the inverse Fourier transform calculation. By using a digital micro-mirror device (DMD), pixelated quasi-continuous modulation from 0 to 2 pi of the LC geometric phase can be achieved. Through demonstrating four-frame images generated from two pattern-aligned LC cells, a method of fabricating low-cost and compact dynamic holographic devices based on the LC geometric phase is proposed, which provides a new option for practical applications such as dynamic digital signage and traffic e-signs. (c) 2025 Optica Publishing Group. All rights, including for text and data mining (TDM), Artificial Intelligence (AI) training, and similar technologies, are reserved.

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