论文标题
沿任意轨迹的广义完美光涡流
Generalized Perfect Optical Vortex along Arbitrary Trajectories
论文作者
论文摘要
完美的光学涡旋(POV)是一种具有无限薄环和固定半径独立于其拓扑电荷的涡流束。在这里,我们提出了沿任意曲线的广义完美光学涡流的概念,超出了圆圈和椭圆形的常规形状。广义的完美光学涡旋也具有与POV相似的属性,例如仅沿着无限的薄曲线定义和独立于尺度的拓扑费。值得注意的是,它们分别沿着圆圈和椭圆形自然退化为POV和椭圆形POV。我们还通过数字微旋转器件(DMD)在实验中生成了广义的完美光学涡旋,并通过干涉测量法测量了相位分布,并与模拟显示了良好的协议。此外,我们得出了适当的修改公式,以产生沿着预先设计的曲线沿着强度均匀强度分布的广义完美光涡流。广义的完美光学涡旋可能会发现光学镊子和通信中的潜在应用。
Perfect optical vortex (POV) is a type of vortex beam with an infinite thin ring and a fixed radius independent of its topological charge. Here we propose the concept of generalized perfect optical vortex along arbitrary curves beyond the regular shapes of circle and ellipse. Generalized perfect optical vortices also share the similar properties as POVs, such as defined only along infinite thin curves and owning topological charges independent of scales. Notably, they naturally degenerate to the POVs and elliptic POVs along circles and ellipses, respectively. We also experimentally generated the generalized perfect optical vortices through a digital micromirror device (DMD) and measured the phase distributions by interferometry, exhibiting good agreements with the simulations. Moreover, we derive a proper modified formula to yield the generalized perfect optical vortices with uniform intensity distribution along predesigned curves. The generalized perfect optical vortices might find the potential applications in optical tweezers and communication.