Generation of variable light fields by radially polarized chirped circular Airy vortex beams

Xiaobing Li, Yang Zhang, Mingyu Liu, Jiayan Li, Jiayang Sun, Wenzhi Wu, Degui Kong
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Abstract

Based on Richards-Wolf vector diffraction theory, the tight focusing properties of radially polarized chirped circular Airy vortex beams (RP-CCAVBs) are theoretically investigated using a high numerical aperture objective lens in the paper. The results shown that super-resolution scalable optical needles, dark channels, elliptical optical cages, and optical oscillations can be obtained by adjusting the scale factor, exponential attenuation coefficient, main ring radius, and topological charge of optical vortex in the incident RP-CCAVBs. The DOF of optical needle and dark channels is exponent dependent on scaling factor ω of RP-CCAVBs. And the position optical needle and dark channels can be moved by changing chirped parameter of RP-CCAVBs. The size of obtained optical cages can be adjusted by changing the radius of main rings in RP-CCAVBs. The intensity distribution of the obtained optical oscillations is intensely affected by parameter and chirp parameter of RP-CCAVBs.
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利用径向偏振啁啾环形艾里涡旋光束产生可变光场
本文基于理查兹-沃尔夫矢量衍射理论,利用高数值孔径物镜对径向偏振啁啾圆艾里涡旋光束(RP-CCAVBs)的紧聚焦特性进行了理论研究。结果表明,通过调整入射 RP-CCAVB 中光涡旋的比例因子、指数衰减系数、主环半径和拓扑电荷,可以获得超分辨可伸缩光针、暗通道、椭圆光笼和光振荡。光针和暗通道的 DOF 与 RP-CCAVB 的比例系数 ω 呈指数关系。通过改变 RP-CCAVB 的啁啾参数,可以移动光针和暗通道的位置。通过改变 RP-CCAVB 中主环的半径,可以调整所获得光笼的大小。获得的光振荡强度分布受 RP-CCAVB 参数和啁啾参数的影响很大。
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