A liquid crystal microlens obtained with a non-uniform electric field

IF 2.4 3区 化学 Q3 CHEMISTRY, MULTIDISCIPLINARY
T. Nose, Susumu Sato
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引用次数: 201

Abstract

Abstract A homogeneously aligned nematic liquid crystal cell with a hole-patterned electrode and with an indium-tin oxide (ITO-) coated counter-electrode has been prepared. A non-uniform electric field can be produced by the asymmetrical electrode structure. The liquid crystal director can be reoriented by applying a voltage across the electrodes, and this produces an axially symmetrical profile of the refractive index. This liquid crystal cell is expected to have a lens effect and so its optical properties have been investigated. The profile of the output light intensity was measured by using a detecting system with an optical fibre. Some relationships between the lens properties, the diameter of the hole and the thickness of the liquid crystal layer have been examined. The liquid crystal cell becomes a convex (converging) lens with a relatively low voltage. A focal length of several millimetres can be obtained by applying voltages of 3-4 V. As the applied voltage increases, the focal length becomes long...
一种具有非均匀电场的液晶微透镜
摘要:制备了一种具有孔图案电极和氧化铟锡(ITO)包覆反电极的均匀排列向列液晶电池。不对称电极结构可产生非均匀电场。液晶导向器可以通过在电极上施加电压来重新定向,这产生了折射率的轴对称轮廓。人们期望这种液晶电池具有透镜效应,因此对其光学特性进行了研究。利用光纤检测系统测量了输出光强的分布。研究了透镜性能、孔直径和液晶层厚度之间的关系。液晶单元变成具有相对低电压的凸(会聚)透镜。施加3-4伏特的电压可以得到几毫米的焦距。随着施加电压的增加,焦距变长…
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来源期刊
Liquid Crystals
Liquid Crystals 化学-晶体学
CiteScore
4.70
自引率
18.20%
发文量
132
审稿时长
1.5 months
期刊介绍: Liquid Crystals publishes accounts of original research concerned with all aspects of liquid crystal science and technology, including experimental and theoretical studies ranging from molecular design and synthesis to applications engineering. The journal focus is on liquid crystalline supermolecular organization and self-assembly in a wide range of materials, including thermotropic, lyotropic, interfacial, chiral, ferroelectric, polymer, micro/nanocomposite, biological and related soft-matter liquid crystal systems. Liquid Crystals provides the scientific community, in both academia and industry, with a publication of standing, guaranteed by the Editors and by the International Editorial Board who are active scientists in the worldwide liquid crystal community.
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