论文标题
与旋转对称性等离激涡旋镜片中与对称兼容的角动量保护关系
Symmetry-compatible angular momentum conservation relation in plasmonic vortex lenses with rotational symmetries
论文作者
论文摘要
在等离激元旋转轨耦合的过程中,产生涡流模式(称为等离子涡旋(PVS))的等离激旋涡旋(PVL)为实现许多基于光学涡流的应用提供了一个有希望的平台。最近,据报道,单个PVL可以生成多个PV。这项工作利用了有限群体的表示理论,揭示了生成的PV的对称起源,并根据对称原理得出了新的保护关系。具体而言,对称原理将PVL的近场划分为区域,指定整数,这些整数是拓扑电荷,向区域,尤其是在PVL中心的PV的拓扑电荷中给出了上限。将对称原理进一步应用于自旋轨道耦合过程,导致新的保护关系。基于此关系,建议使用两步过程将入射场的角动量与通过PVL的对称性的生成的PV联系起来。数值计算很好地证明了这一理论。这项工作为PVLS中自旋轨道耦合的动力学提供了一种替代但必不可少的对称性观点,为之前进行的物理研究形成了强有力的补充,因此为基于新兴涡流的纳米光子应用程序灵活地操纵PVS奠定了坚实的基础。
Plasmonic vortex lenses (PVLs), producing vortex modes, known as plasmonic vortices (PVs), in the process of plasmonic spin-orbit coupling, provide a promising platform for the realization of many optical vortex-based applications. Very recently, it has been reported that a single PVL can generate multiple PVs. This work exploits the representation theory of finite groups, reveals the symmetry origin of the generated PVs, and derives a new conservation relation based on symmetry principles. Specifically, the symmetry principles divide the near field of the PVL into regions, designate integers, which are the topological charges, to the regions, and, particularly, give an upper bound to the topological charge of the PV at the center of the PVL. Further application of the symmetry principles to the spin-orbit coupling process leads to a new conservation relation. Based on this relation, a two-step procedure is suggested to link the angular momentum of the incident field with the one of the generated PVs through the symmetries of the PVL. This theory is well demonstrated by numerical calculations. This work provides an alternative but essential symmetry perspective on the dynamics of spin-orbit coupling in PVLs, forms a strong complement for the physical investigations performed before, and therefore lays down a solid foundation for flexibly manipulating the PVs for emerging vortex-based nanophotonic applications.