Algorri José Francisco, Urruchi Virginia, García-Cámara Braulio, Sánchez-Pena José Manuel
Electronic Technology Department, Carlos III University of Madrid, Butarque 15, E28911, Madrid, Spain.
Materials (Basel). 2014 Mar 28;7(4):2593-2604. doi: 10.3390/ma7042593.
Until now, several attempts have been made to obtain axicons by using liquid crystals. Previous results had always a considerable deviation from the linear response and the resulting aperture is square. In addition, classical fabrications methods are expensive and only produce fixed phase profiles. In this study, a novel structure to obtain tunable axicons with a perfect conical shape and a circular aperture is proposed and theoretically studied. The proposed optical device is based on nematic liquid crystal and phase shifted electrical signals. A simulation program consisted of Finite Elements Method to solve the voltage distribution combined with the Frank-Oseen equation to solve the molecular position of the nematic liquid crystal is employed. This device is totally reconfigurable by using low voltage signals. The focus depth and the position of this one can be controlled electrically.
到目前为止,已经有几次尝试通过使用液晶来获得轴棱锥。先前的结果总是与线性响应有相当大的偏差,并且所得到的孔径是方形的。此外,传统的制造方法成本高昂,并且只能产生固定的相位分布。在本研究中,提出并从理论上研究了一种新颖的结构,该结构可获得具有完美圆锥形状和圆形孔径的可调谐轴棱锥。所提出的光学器件基于向列型液晶和相移电信号。采用了一个由有限元方法组成的模拟程序来求解电压分布,并结合弗兰克 -奥森方程来求解向列型液晶的分子位置。该器件通过使用低电压信号可完全重新配置。其焦深及其位置可以通过电方式控制。