Xie Zu-Wen, Yang Jhen-Hong, Vashistha Vishal, Lee Wei, Chen Kuo-Ping
Opt Express. 2017 Nov 27;25(24):30764-30770. doi: 10.1364/OE.25.030764.
Designing color pixels using plasmonic nanostructures and metasurfaces has become a luring area of research in recent years. Here, we experimentally demonstrated the voltage tunability of a dynamic plasmonic color filter by using an aluminum grating integrated with the nematic liquid crystal (LC). Along with a typical substrate coated with rubbed polyimide film, the aluminum grating itself serves as a molecular alignment layer to form a twisted LC cell. This hybrid structure allows electrically controlled transmission color by applying the voltage. A significant spectral tunability of such a device has been demonstrated by applying the small voltage from 0 to 4 V.
近年来,利用等离子体纳米结构和超表面设计彩色像素已成为一个引人入胜的研究领域。在此,我们通过使用与向列型液晶(LC)集成的铝光栅,实验证明了动态等离子体彩色滤光片的电压可调性。与涂有摩擦聚酰亚胺薄膜的典型基板一起,铝光栅本身用作分子取向层以形成扭曲的液晶盒。这种混合结构允许通过施加电压来实现电控制的透射颜色。通过施加0至4V的小电压,已证明了这种器件具有显著的光谱可调性。