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用于涡旋光束产生的基于奇异点的表面等离激元超表面

Exceptional point-based plasmonic metasurfaces for vortex beam generation.

作者信息

Leung Ho Ming, Gao Wensheng, Zhang Ranran, Zhao Qiuling, Wang Xia, Chan C T, Li Jensen, Tam Wing Yim

出版信息

Opt Express. 2020 Jan 6;28(1):503-510. doi: 10.1364/OE.28.000503.

Abstract

An exceptional point occurring in a tailor-made lossy optical system has been recently found to alter optical properties in counter-intuitive ways. In the context of tunable plasmonic devices, exceptional points can be useful as a driving mechanism to enhance tunability. Here, we experimentally demonstrate how a plasmonic exceptional point can be incorporated in metasurface Q-plates to have the generated vortex beam tuned through a change of structural parameter. We have observed an orbital rotation in the far-field by 45 degrees in crossing the exceptional point. We expect a new generation of tunable plasmonic devices in polarization control, beam structuring and holograms, which can take advantage of the huge sensitivity from exceptional points.

摘要

最近发现,在一个特制的有损光学系统中出现的异常点会以违反直觉的方式改变光学特性。在可调谐等离子体器件的背景下,异常点可作为增强可调谐性的驱动机制。在此,我们通过实验证明了如何将等离子体异常点纳入超表面Q板,以通过改变结构参数来调谐所产生的涡旋光束。我们观察到,在穿过异常点时,远场中的轨道旋转了45度。我们期待新一代可用于偏振控制、光束整形和全息术的可调谐等离子体器件,它们能够利用异常点带来的巨大灵敏度。

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