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Observation of the Spin-Based Plasmonic Effect in Nanoscale Structures

机译:纳米结构中基于自旋的等离子效应的观察

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Observation of surface-plasmon phenomena that are dependent upon the handedness of the circularly polarized incident light (spin) is presented. The polarization-dependent near-field intensity distribution obtained in our experiment is attributed to the presence of a geometric phase arising from the interaction of light with an anisotropic and inhomogeneous nanoscale structure. A near-field vortex surface mode with a spin-dependent topological charge was obtained in a plasmonic microcavity. The remarkable phenomenon of polarization-sensitive focusing in a plasmonic structure was also demonstrated.
机译:提出了对表面等离子体现象的观察,该现象取决于圆偏振入射光(自旋)的旋向性。在我们的实验中获得的偏振相关的近场强度分布归因于几何相的存在,该几何相是由光与各向异性且不均匀的纳米级结构的相互作用引起的。在等离子体微腔中获得了具有自旋依赖性拓扑电荷的近场涡旋表面模式。还展示了在等离子体激元结构中偏振敏感聚焦的显着现象。

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