论文标题
映射结构化表面等离子体极化子场中的近场自旋角动量
Mapping the near-field spin angular momenta in the structured surface plasmon polaritons field
论文作者
论文摘要
在狭窄的电磁场中,光旋转角动量与其自由空间对应物具有显着差异,尤其是与能量传播方向锁定的光学横向旋转为许多有趣的物理效应奠定了基础对于在狭窄的领域中发现旋转质地至关重要,但是由于其手性和近场矢量特征,它面临挑战。在这里,我们提出了一种扫描成像技术,该技术可以用Achiral Dielectric纳米球绘制光学旋转角动量的近场分布。可以通过采用提出的扫描成像技术来实验地发现旋转角动量成分与界面的垂直成分,并且可以通过实验结果对三维自旋矢量进行实验。在紧密的构型下,通过各种矢量涡流束激发的表面等离子体极化子的示例证明了该实验,其中自旋轨道相互作用清楚地出现。所提出的方法可用于重建光子天空和其他光子拓扑结构,是直接的,并且具有很高的精度,因此预计它对于研究近场自旋光学和拓扑光子学的研究很有价值。
Optical spin angular momenta in a confined electromagnetic field exhibit remarkable difference with their free space counterparts, in particular, the optical transverse spin that is locked with the energy propagating direction lays the foundation for many intriguing physical effects such as unidirectional transportation, quantum spin Hall effect, photonic Skyrmion, etc. In order to investigate the underlying physics behind the spin-orbit interactions as well as to develop the optical spin-based applications, it is crucial to uncover the spin texture in a confined field, yet it faces challenge due to their chiral and near-field vectorial features. Here, we propose a scanning imaging technique which can map the near-field distributions of the optical spin angular momenta with an achiral dielectric nanosphere. The spin angular momentum component normal to the interface can be uncovered experimentally by employing the proposed scanning imaging technique and the three-dimensional spin vector can be reconstructed theoretically with the experimental results. The experiment is demonstrated on the example of surface plasmon polaritons excited by various vector vortex beams under a tight-focusing configuration, where the spin-orbit interaction emerges clearly. The proposed method, which can be utilized to reconstruct the photonic Skyrmion and other photonic topological structures, is straightforward and of high precision, and hence it is expected to be valuable for the study of near-field spin optics and topological photonics.