Wang Daiyin, Huang Hongxin, Matsui Yoshinori, Tanaka Hiroshi, Toyoda Haruyoshi, Inoue Takashi, Liu Huafeng
Opt Express. 2019 Mar 4;27(5):7803-7821. doi: 10.1364/OE.27.007803.
Determining topological charge (TC) of optical vortex (OV) beams is important for many applications, such as optical measurement and information transmission through long-distance propagation. In this application, the OV beams usually have an annular intensity profile at the receiving end and are inevitably distorted by aberrations during propagation. In this paper, we propose a simple, direct, and aberration-resistible method to determine the TC value of this annular-shaped OV beam with a Shack-Hartmann wavefront sensor (SH-WFS). Our approach involves finding a closed-path along the annular intensity distribution ridge, and then determining the TC value by a discrete circulation calculation with only the phase-slope vectors along the closed-path. Verification experiments were performed using a phase-only spatial light modulator to generate OV beams and aberrations, while SH-WFS to measure the intensity profile and phase-slopes. The results show that our method can determine the TC value of up to ± 20. The robustness against wavefront aberration and simulated atmospheric turbulence was evaluated. We also verified the proposed closed-path's superiority to other circular closed-paths for TC determination.
确定光学涡旋(OV)光束的拓扑电荷(TC)对于许多应用都很重要,例如光学测量和通过长距离传播的信息传输。在这种应用中,OV光束在接收端通常具有环形强度分布,并且在传播过程中不可避免地会因像差而失真。在本文中,我们提出了一种简单、直接且抗像差的方法,利用夏克-哈特曼波前传感器(SH-WFS)来确定这种环形OV光束的TC值。我们的方法包括沿着环形强度分布脊找到一条封闭路径,然后仅通过沿该封闭路径的相位斜率矢量进行离散环流计算来确定TC值。使用仅相位空间光调制器生成OV光束和像差,并使用SH-WFS测量强度分布和相位斜率,进行了验证实验。结果表明,我们的方法可以确定高达±20的TC值。评估了其对波前像差和模拟大气湍流的鲁棒性。我们还验证了所提出的封闭路径在确定TC方面优于其他圆形封闭路径。