Flat multifunctional liquid crystal elements through multi-dimensional information multiplexing

多路复用 极化(电化学) 波前 加密 材料科学 光学 计算机科学 液晶 光电子学 物理 电信 化学 操作系统 物理化学
作者
Dongliang Tang,Zhenglong Shao,Xin Xie,Yingjie Zhou,Xiaohu Zhang,Fan Fan,Shuangchun Wen
出处
期刊:Opto-Electronic Advances [Opto-Electronic Advances]
卷期号:: 220063-220063 被引量:1
标识
DOI:10.29026/oea.2023.220063
摘要

Flat optical elements have attracted enormous attentions and act as promising candidates for the next generation of optical components. As one of the most outstanding representatives, liquid crystal (LC) has been widely applied in flat panel display industries and inspires the wavefront modulation with the development of LC alignment techniques. However, most LC elements perform only one type of optical manipulation and are difficult to realize the multifunctionality and light integration. Here, flat multifunctional liquid crystal elements (FMLCEs), merely composed of anisotropic LC molecules with space-variant orientations, are presented for multichannel information manipulation by means of polarization, space and wavelength multiplexing. Specifically, benefiting from the unique light response with the change of the incident polarization, observation plane, and working wavelength, a series of FMLCEs are demonstrated to achieve distinct near- and far-field display functions. The proposed strategy takes full advantage of basic optical parameters as the decrypted keys to improve the information capacity and security, and we expect it to find potential applications in information encryption, optical anti-counterfeiting, virtual/augmented reality, etc.
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