Zhong Jinzhan, Liu Sheng, Guo Xuyue, Li Peng, Wei Bingyan, Han Lei, Qi Shuxia, Zhao Jianlin
Opt Express. 2021 Nov 8;29(23):38849-38857. doi: 10.1364/OE.441263.
Knots and links, as three-dimensional topologies, have played a fundamental role in many physical fields. Despite knotted vortex loops having been shown to exist in the light field, the three-dimensional configuration of vortex loop is fixed due to their topological robustness, making the fields with different topologies independent of each other. In this work, we established the mapping between the torus knots/links and the integer topological charge of the optical vortex, and demonstrated the change of the intermediate state with fractional charges. Furthermore, we experimentally observed the transformation process of the three-dimensional topological structure by only changing the topological charge. Remarkably, we revealed two different reconnection mechanisms associated with the odd or even index of the torus topology. We hope these results may provide new insight for the study of singular optics and evolution in other physical fields.
纽结和链环作为三维拓扑结构,在许多物理领域中发挥了重要作用。尽管已经证明在光场中存在打结的涡旋环,但由于其拓扑稳健性,涡旋环的三维构型是固定的,这使得具有不同拓扑结构的场相互独立。在这项工作中,我们建立了环面纽结/链环与光学涡旋的整数拓扑电荷之间的映射,并展示了具有分数电荷的中间态的变化。此外,我们仅通过改变拓扑电荷就实验观察到了三维拓扑结构的转变过程。值得注意的是,我们揭示了与环面拓扑的奇数或偶数指标相关的两种不同的重连机制。我们希望这些结果可能为奇异光学的研究以及其他物理领域中的演化提供新的见解。