Ren Hongwen, Xu Su, Liu Yifan, Wu Shin-Tson
Department of polymer Nano-Science and Tech., Chonbuk National University, Jeonju, Jeonbuk, 561-756, South Korea.
Opt Express. 2013 Apr 8;21(7):7916-25. doi: 10.1364/OE.21.007916.
We demonstrate a flat polymeric lenticular microlens array using a mixture of rod-like diacrylate monomer and positive dielectric anisotropy nematic liquid crystal (LC). To create gradient refractive index profile in one microlens, we generate fringing fields from a planar top electrode and two striped bottom electrodes. After UV stabilization, the film is optically anisotropic and can stand alone. We then laminate this film on a 90° twisted-nematic LC cell, which works as a dynamic polarization rotator. The static polymeric lenticular lens exhibits focusing effect only to the extraordinary ray, but no optical effect to the ordinary ray. Such an integrated lens system offers several advantages, such as low voltage, fast response time, and temperature insensitivity, and can be used for switchable 2D/3D displays.
我们展示了一种使用棒状二丙烯酸酯单体和正介电各向异性向列型液晶(LC)混合物的扁平聚合物双凸透镜微透镜阵列。为了在一个微透镜中创建梯度折射率分布,我们从平面顶部电极和两个条纹底部电极产生边缘场。紫外线固化后,该薄膜具有光学各向异性且可以独立存在。然后,我们将此薄膜层压在一个90°扭曲向列型液晶盒上,该液晶盒用作动态偏振旋转器。静态聚合物双凸透镜仅对非常光线表现出聚焦效果,而对寻常光线没有光学效果。这种集成透镜系统具有多种优点,例如低电压、快速响应时间和温度不敏感性,可用于可切换的2D/3D显示器。