Song Young Min, Choi Hee Ju, Yu Jae Su, Lee Yong Tak
Department of Information and Communications, Gwangju Institute of Science and Technology, 1 Oryong-dong, Buk-gu, Gwangju 500-712, Republic of Korea.
Opt Express. 2010 Jun 7;18(12):13063-71. doi: 10.1364/OE.18.013063.
We present a design optimization of highly transparent glasses with broadband antireflective subwavelength structures (SWS) based on the theoretical calculation using a rigorous coupled wave analysis method. It is found that optical transmission characteristics of SWS integrated glasses are governed mainly by the zero-order condition considering multiple internal reflections but not external reflection. By utilizing parabola-shaped SWS on both sides of the glasses with a period of 200 nm and a height of 200 nm, an average transmittance of 99.58% is achieved over a whole range of visible wavelength. Transmission band shrinkage effects of the SWS integrated glass are also observed with increasing the incident angle of light.
我们基于严格耦合波分析方法的理论计算,提出了一种具有宽带抗反射亚波长结构(SWS)的高透明玻璃的设计优化方案。研究发现,集成SWS的玻璃的光学传输特性主要由考虑多次内部反射而非外部反射的零阶条件决定。通过在玻璃两侧使用周期为200nm、高度为200nm的抛物线形SWS,在整个可见波长范围内实现了99.58%的平均透过率。随着光入射角的增加,还观察到了集成SWS玻璃的透射带收缩效应。