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Efficient nonlinear metasurfaces by using multiresonant high-Q plasmonic arrays

机译:高效的非线性元质urface使用多阵高Q等离子体阵列

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We numerically investigate second-harmonic generation from multiresonant plasmonic metasurfaces by designing an array consisting of L-shaped aluminum nanoparticles that simultaneously supports two surface lattice resonances with relatively high quality factors (>100). Using an approach based on the nonlinear discrete-dipole approximation, we predict an over million-fold enhancement of the emitted second-harmonic intensity from a particle at the center of the metasurface compared to an individual particle and estimate that conversion efficiencies of around 10(-5) could be achievable from the surface. Our results are an important step towards making nonlinear metasurfaces practical for nonlinear applications, such as for frequency conversion. (C) 2019 Optical Society of America
机译:我们通过设计由L形铝纳米颗粒组成的阵列来数值研究了来自多阵等离子体元件的二次谐波产生,该阵列同时支持具有相对高质量的因素(> 100)的两个表面晶格共振。 使用基于非线性离散 - 偶极近似的方法,与单独的颗粒相比,我们预测来自元表面中心的颗粒的颗粒的发射二次谐波强度的增强百万倍,并估计转换效率约为10( -5)可以从表面实现。 我们的结果是对非线性应用实用的非线性熔化件的重要一步,例如用于变频应用。 (c)2019年光学学会

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