| Literature DB >> 33322782 |
Bing-Yau Huang1, Ting-Hui Chen1, Tzu-Yeh Chen1, Jia-De Lin2, Tsung-Hsien Lin3, Chie-Tong Kuo1,4.
Abstract
This paper presents a focusing efficiency and focal length tunable planar Fresnel lens in reflection type based on azo-dye-doped cholesterol liquid crystal film. The Fresnel-like pattern of a pumping beam can be formed by a Sagnac interferometer. When the azo-dye molecules are irradiated by the pumping beam, the photoalignment effect will be induced in the bright (odd) zones due to the trans-cis photoisomerization of azo-dye molecules. Thus, the structures of cholesteric liquid crystals in the odd zones will reorient from the imperfectly planar textures to the perfectly planar textures. The different structures of cholesteric liquid crystals in two adjacent zones will give rise to phase difference for the reflected light and thus function as a Fresnel lens. The focusing efficiency of the proposed Fresnel lens can be controlled by the applied voltages and affected by the polarization state of incident light. Moreover, various focal lengths of the Fresnel lens can be achieved by rewriting a different center radius of the Fresnel-like pattern.Entities:
Keywords: cholesteric liquid crystals; fresnel lens; photoalignment; rewritable; sagnac interferometer
Year: 2020 PMID: 33322782 PMCID: PMC7764258 DOI: 10.3390/polym12122972
Source DB: PubMed Journal: Polymers (Basel) ISSN: 2073-4360 Impact factor: 4.329