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利用与等离激元超表面的交叉调制实现完全干涉可控的反常折射效率。

Fully interferometric controllable anomalous refraction efficiency using cross modulation with plasmonic metasurfaces.

作者信息

Liu Zhaocheng, Chen Shuqi, Li Jianxiong, Cheng Hua, Li Zhancheng, Liu Wenwei, Yu Ping, Xia Ji, Tian Jianguo

出版信息

Opt Lett. 2014 Dec 1;39(23):6763-6. doi: 10.1364/OL.39.006763.

Abstract

We present a method of fully interferometric, controllable anomalous refraction efficiency by introducing cross-modulated incident light based on plasmonic metasurfaces. Theoretical analyses and numerical simulations indicate that the anomalous and ordinary refracted beams generated from two opposite-helicity incident beams and following the generalized Snell's law will have a superposition for certain incident angles, and the anomalous refraction efficiency can be dynamically controlled by changing the relative phase of the incident sources. As the incident wavelength nears the resonant wavelength of the plasmonic metasurfaces, two equal-amplitude incident beams with opposite helicity can be used to control the anomalous refraction efficiency. Otherwise, two unequal-amplitude incident beams with opposite helicity can be used to fully control the anomalous refraction efficiency. This Letter may offer a further step in the development of controllable anomalous refraction.

摘要

我们提出了一种基于等离激元超表面引入交叉调制入射光来实现全干涉式、可控反常折射效率的方法。理论分析和数值模拟表明,由两个相反螺旋度的入射光束产生并遵循广义斯涅尔定律的反常折射光束和普通折射光束,在特定入射角下会发生叠加,并且反常折射效率可以通过改变入射光源的相对相位来动态控制。当入射波长接近等离激元超表面的共振波长时,可使用两个等振幅、相反螺旋度的入射光束来控制反常折射效率。否则,可使用两个不等振幅、相反螺旋度的入射光束来完全控制反常折射效率。这封信可能为可控反常折射的发展迈出进一步的步伐。

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