Xie Zhiqiang, He Yanliang, Chen Xueyu, Liu Junmin, Zhou Xinxing, Ye Huapeng, Li Ying, Chen Shuqing, Zhang Xiaomin, Fan Dianyuan
Opt Express. 2019 Sep 16;27(19):27282-27294. doi: 10.1364/OE.27.027282.
Circular symmetry singular light beams (CS-SLBs) possessing spatially variant field distributions have drawn extensive attention because of their unique optical properties. However, the extraction of spatial phase and polarization distributions is always a significant but difficult issue in CS-SLB applications. Here, we propose and experimentally investigate an orthogonal polarization separation (OPS) method to retrieve the spatial phase and polarization distributions of arbitrary CS-SLBs. Theoretically, the CS-SLB, including the vortex beam (VB), cylindrical vector beam (CVB), and cylindrical vector vortex beam (CVVB), can be decomposed into two orthogonal circularly polarized sub-VBs. Therefore, once the spatial phase distributions and initial phase difference of the two components are obtained, the phase and polarization distributions of the CS-SLB can be retrieved, and its type can also be identified. Based on this analysis relationship, we first separated the CS-SLB into two circularly polarized sub-VBs and designed an astigmatic phase iterative algorithm to restore their spatial phase information. After retrieving the phases of the two components, we have experimentally obtained the spatial phase and polarization distributions of three typical CS-SLBs, including VBs, CVBs, and CVVBs. These results demonstrate that this method provides a feasible way to retrieve the variant field distributions of CS-SLBs and may have great application prospects in optical imaging, optical communication, etc.
具有空间变化场分布的圆对称奇异光束(CS-SLBs)因其独特的光学特性而受到广泛关注。然而,在CS-SLB应用中,空间相位和偏振分布的提取始终是一个重要但困难的问题。在此,我们提出并通过实验研究了一种正交偏振分离(OPS)方法,以获取任意CS-SLB的空间相位和偏振分布。从理论上讲,CS-SLB,包括涡旋光束(VB)、柱矢量光束(CVB)和柱矢量涡旋光束(CVVB),可以分解为两个正交的圆偏振子涡旋光束。因此,一旦获得这两个分量的空间相位分布和初始相位差,就可以获取CS-SLB的相位和偏振分布,并且还可以识别其类型。基于这种分析关系,我们首先将CS-SLB分离为两个圆偏振子涡旋光束,并设计了一种像散相位迭代算法来恢复它们的空间相位信息。在获取了两个分量的相位之后,我们通过实验获得了三种典型CS-SLB的空间相位和偏振分布,包括VB、CVB和CVVB。这些结果表明,该方法为获取CS-SLB的变化场分布提供了一种可行的途径,并且在光学成像、光通信等领域可能具有巨大的应用前景。