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次生等离子体涡旋

Deuterogenic Plasmonic Vortices.

作者信息

Yang Yuanjie, Wu Lixiang, Liu Yidong, Xie Dekun, Jin Zhongwei, Li Jiafang, Hu Guangwei, Qiu Cheng-Wei

机构信息

School of Physics, University of Electronic Science and Technology of China, Chengdu 611731, China.

Department of Electrical and Computer Engineering, National University of Singapore, Singapore 117583, Singapore.

出版信息

Nano Lett. 2020 Sep 9;20(9):6774-6779. doi: 10.1021/acs.nanolett.0c02699. Epub 2020 Aug 25.

Abstract

The optical vortex on a chip is of extreme importance for many applications in nanoscience, and as well-known, the chiral metallic nanostructures like plasmonic vortex lenses (PVLs) can produce a spin-dependent plasmonic vortex (PV) which is governed by plasmonic spin-orbit coupling. The well-established nanophotonic theory and various experimental demonstrations all show a single PV mode in one PVL, when the excitation is fixed. Here, counterintuitively, we report the existence of the nontrivial deuterogenic PVs, besides the one predicted previously. We theoretically reveal a general spin-to-orbit coupling and experimentally demonstrate the surprising existence of multiple PVs in a single PVL even when excited by a fixed circularly polarized vortex beam. This work provides a deeper fundamental understanding of the dynamics and the near-field spin-orbit coupling in nanophotonics, which promises to flexibly manipulate the PV for emerging optical vortex-based nanotechnologies and quantum optical applications on a chip.

摘要

芯片上的光学涡旋对于纳米科学中的许多应用极为重要,众所周知,诸如等离子体涡旋透镜(PVL)之类的手性金属纳米结构可以产生由等离子体自旋 - 轨道耦合控制的自旋相关等离子体涡旋(PV)。成熟的纳米光子学理论和各种实验演示都表明,当激发固定时,一个PVL中存在单一的PV模式。在这里,与直觉相反,我们报告了除先前预测的PV之外,还存在非平凡的衍生PV。我们从理论上揭示了一种通用的自旋 - 轨道耦合,并通过实验证明即使在由固定圆偏振涡旋光束激发时,单个PVL中也存在多个PV,这一惊人现象。这项工作为纳米光子学中的动力学和近场自旋 - 轨道耦合提供了更深入的基础理解,有望灵活地操纵PV以用于新兴的基于光学涡旋的纳米技术和芯片上的量子光学应用。

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