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Generation of perfect vectorial vortex beams by employing coherent beam combining

物理 拓扑量子数 光学 极化(电化学) 角动量 圆极化 椭圆极化 旋涡 拓扑(电路) 线极化 涡流 高斯光束 几何相位 梁(结构) 激光器 量子力学 热力学 化学 数学 物理化学 组合数学 微带线
作者
Pei Ju,Wenhui Fan,Wei Gao,Zhe Li,Qi Gao,Gang Li,Xiaoqiang Jiang,Tong‐Yi Zhang
出处
期刊:Optics Express [Optica Publishing Group]
卷期号:31 (7): 11885-11885 被引量:12
标识
DOI:10.1364/oe.485396
摘要

Based on coherent beam combining, we propose a method for generating the perfect vectorial vortex beams (VVBs) with a specially designed radial phase-locked Gaussian laser array, which is composed of two discrete vortex arrays with right-handed (RH) and left-handed (LH) circularly polarized states and in turn adjacent to each other. The simulation results demonstrate that the VVBs with correct polarization order and topological Pancharatnam charge are successfully generated. The diameter and thickness of generated VVBs independent of the polarization orders and topological Pancharatnam charges further prove that the generated VVBs are perfect. Propagating in free space, the generated perfect VVBs can be stable for a certain distance, even with half-integer orbital angular momentum. In addition, constant phases φ0 between the RH and LH circularly polarized laser arrays has no effect on polarization order and topological Pancharatnam charge but makes polarization orientation to rotate φ0/2. Moreover, perfect VVBs with elliptically polarized states can be flexibly generated only by adjusting the intensity ratio between the RH and LH circularly polarized laser array, and such perfect VVBs are also stable on beam propagation. The proposed method could provide a valuable guidance for high power perfect VVBs in future applications.

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