Liu Tao, Tan Jiubin, Liu Jian, Wang Hongting
Center of Ultra-precision Optoelectronic Instrument Engineering, Harbin Institute of Technology, Harbin 150001, China.
Opt Express. 2013 Jul 1;21(13):15090-101. doi: 10.1364/OE.21.015090.
A design and optimization method based on vectorial angular spectrum theory is proposed in this paper for the vectorial design of a super-oscillatory lens (SOL), so that the radially polarized vector beam can be tightly focused. The structure of a SOL is optimized using genetic algorithm and the computational process is accelerated using fast Hankel transform algorithm. The optimized results agree well with what is obtained using the vectorial Rayleigh-Sommerfeld diffraction integral. For an oil immersed SOL, a subwavelength focal spot of about 0.25 illumination wavelength without any significant side lobe can be created at a distance of 184.86 μm away from a large SOL with a diameter of 1mm. The proposed vectorial design method can be used to efficiently design a SOL of arbitrary size illuminated by various vector beams, with the subwavelength hotspot located in a post-evanescent observation plane.
本文提出了一种基于矢量角谱理论的设计与优化方法,用于超振荡透镜(SOL)的矢量设计,以使径向偏振矢量光束能够被紧密聚焦。利用遗传算法对SOL的结构进行优化,并使用快速汉克尔变换算法加速计算过程。优化结果与使用矢量瑞利 - 索末菲衍射积分得到的结果吻合良好。对于油浸SOL,在距直径为1mm的大型SOL 184.86μm处,可以产生一个约为0.25照明波长的亚波长焦斑,且没有任何明显的旁瓣。所提出的矢量设计方法可用于高效设计由各种矢量光束照射的任意尺寸的SOL,亚波长热点位于倏逝波后观测平面。