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A comparative analysis of surface and bulk contributions to second-harmonic generation in centrosymmetric nanoparticles

机译:对中心对称纳米粒子中次谐波产生的表面和体积贡献的比较分析

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Second-harmonic generation (SHG) from nanoparticles made of centrosymmetric materials provides an effective tool to characterize many important properties of photonic structures at the subwavelength scale. Here we study the relative contribution of surface and bulk effects to SHG for plasmonic and dielectric nanostructures made of centrosymmetric materials in both dispersive and non-dispersive regimes. Our calculations of the far-fields generated by the nonlinear surface and bulk currents reveal that the size of the nanoparticle strongly influences the amount and relative contributions of the surface and bulk SHG effects. Importantly, our study reveals that, whereas for plasmonic nanoparticles the surface contribution is always dominant, the bulk and surface SHG effects can become comparable for dielectric nanoparticles, and thus they both should be taken into account when analyzing nonlinear optical properties of all-dielectric nanostructures.
机译:由中心对称材料制成的纳米粒子的二次谐波生成(SHG)提供了一种有效的工具,可在亚波长范围内表征光子结构的许多重要特性。在这里,我们研究了由中心对称材料制成的等离激元和介电纳米结构在分散和非分散状态下,表面和整体效应对SHG的相对贡献。我们对非线性表面和体电流产生的远场的计算表明,纳米粒子的大小强烈影响表面和体SHG效应的数量和相对贡献。重要的是,我们的研究表明,尽管对于等离子纳米颗粒,表面贡献始终占主导地位,但体积和表面SHG效应可与介电纳米颗粒相比,因此,在分析全介电纳米结构的非线性光学性质时,应将它们都考虑在内。

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