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由互补开口环谐振器构成的高透射率超表面产生的工程二次谐波衍射。

Engineered second-harmonic diffraction from highly transmissive metasurfaces composed of complementary split-ring resonators.

作者信息

Yang Xin, Zhang Chi, Wan Mingjie, Chen Zhuo, Wang Zhenlin

出版信息

Opt Lett. 2016 Jul 1;41(13):2938-41. doi: 10.1364/OL.41.002938.

Abstract

We theoretically and experimentally investigated the optical second-harmonic (SH) diffraction from metasurfaces based on gold complementary split-ring resonators (CSRRs). We have demonstrated that the generated SH currents are mostly parallel to the incident polarization and are asymmetric with respect to the base of a CSRR, thus allowing us to impose the phase change of π on the SH radiation by reversing the CSRR's orientation. We verified this concept of geometry-induced nonlinear phase by designing and fabricating a nonlinear metasurface consisting of supercells of CSRRs with opposite orientations that can function as a SH beam splitter. The ability to control the phase of the local nonlinearity coupled with the high transmittance at both fundamental and SHG wavelengths makes the CSRRs good candidates for the construction of highly efficient three-dimensional nonlinear metamaterials and suitable for applications in nonlinear beam shaping.

摘要

我们从理论和实验上研究了基于金互补开口环谐振器(CSRR)的超表面的光学二次谐波(SH)衍射。我们已经证明,所产生的SH电流大多与入射偏振平行,并且相对于CSRR的基部是不对称的,因此通过反转CSRR的取向,我们能够在SH辐射上施加π的相位变化。我们通过设计和制造由具有相反取向的CSRR超单元组成的非线性超表面来验证这种几何结构诱导的非线性相位概念,该超表面可作为一个SH分束器。控制局部非线性相位的能力,再加上在基波和二次谐波波长处的高透射率,使得CSRR成为构建高效三维非线性超材料的良好候选者,适用于非线性光束整形应用。

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