论文标题

等离子元原子超极化性超极化性

Hyperpolarizability of plasmonic meta-atoms in metasurfaces

论文作者

Bin-Alam, M. Saad, Baxter, Joshua, Awan, Kashif M., Kiviniemi, Antti, Mamchur, Yaryna, Lesina, Antonio Calà, Tsakmakidis, Kosmas L., Huttunen, Mikko J., Ramunno, Lora, Dolgaleva, Ksenia

论文摘要

等离子元面是纳米级非线性光学和扁平非线性光学组件的推动因素。此类跨面的非线性光学响应由单个纳米结构的等离子元原子的非线性光学特性确定,这是metasurfaces的构建块。不幸的是,没有简单的方法来确定非线性元信息的元原子阻碍设计的非线性系数(超极化)。在这里,我们开发了这种元原子的等效RLC电路模型,以估计其二阶非线性光学参数,即光谱范围内的一阶超极化性。同时,我们从第二次谐波生成实验中提取单个元原子的一阶超极化的光谱,这些元原子由不对称形状的(细长)等离激元纳米裔组成。此外,我们使用非线性流体动力-FDTD验证结果,并根据非线性散射理论进行计算。这三种方法:分析,实验和计算,产量结果非常吻合。因此,我们的经验RLC模型可以用作一种简单的工具,以实现非线性等离子跨面的有效设计。

Plasmonic metasurfaces are promising as enablers of nanoscale nonlinear optics and flat nonlinear optical components. Nonlinear optical responses of such metasurfaces are determined by the nonlinear optical properties of individual nanostructured plasmonic meta-atoms, which are the building blocks of the metasurfaces. Unfortunately, no simple methods exist to determine the nonlinear coefficients (hyperpolarizabilities) of the meta-atoms hindering designing of nonlinear metasurfaces. Here, we develop the equivalent RLC circuit model of such meta-atoms to estimate their second-order nonlinear optical parameter i.e. the first-order hyperpolarizability in the optical spectral range. In parallel, we extract from second-harmonic generation experiments the spectrum of the 1st-order hyperpolarizabilities of individual meta-atoms consisting of asymmetrically shaped (elongated) plasmonic nanoprisms. Moreover, we verify our results using nonlinear hydrodynamic-FDTD and with calculations based on nonlinear scattering theory. All three approaches: analytical, experimental, and computational, yield results that agree very well. Our empirical RLC model can thus be used as a simple tool to enable efficient design of nonlinear plasmonic metasurfaces.

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