首页> 美国卫生研究院文献>Beilstein Journal of Nanotechnology >Metal–dielectric hybrid nanoantennas for efficient frequency conversion at the anapole mode
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Metal–dielectric hybrid nanoantennas for efficient frequency conversion at the anapole mode

机译:金属-电介质混合纳米天线用于在偶极子模式下进行有效的频率转换

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摘要

>Background: Dielectric nanoantennas have recently emerged as an alternative solution to plasmonics for nonlinear light manipulation at the nanoscale, thanks to the magnetic and electric resonances, the strong nonlinearities, and the low ohmic losses characterizing high refractive-index materials in the visibleear-infrared (NIR) region of the spectrum. In this frame, AlGaAs nanoantennas demonstrated to be extremely efficient sources of second harmonic radiation. In particular, the nonlinear polarization of an optical system pumped at the anapole mode can be potentially boosted, due to both the strong dip in the scattering spectrum and the near-field enhancement, which are characteristic of this mode. Plasmonic nanostructures, on the other hand, remain the most promising solution to achieve strong local field confinement, especially in the NIR, where metals such as gold display relatively low losses. >Results: We present a nonlinear hybrid antenna based on an AlGaAs nanopillar surrounded by a gold ring, which merges in a single platform the strong field confinement typically produced by plasmonic antennas with the high nonlinearity and low loss characteristics of dielectric nanoantennas. This platform allows enhancing the coupling of light to the nanopillar at coincidence with the anapole mode, hence boosting both second- and third-harmonic generation conversion efficiencies. More than one order of magnitude enhancement factors are measured for both processes with respect to the isolated structure. >Conclusion: The present results reveal the possibility to achieve tuneable metamixers and higher resolution in nonlinear sensing and spectroscopy, by means of improved both pump coupling and emission efficiency due to the excitation of the anapole mode enhanced by the plasmonic nanoantenna.
机译:>背景:由于磁谐振和电谐振,强非线性和低折射率损耗(表征高折射率),介电纳米天线最近已成为等离子体在纳米级进行非线性光处理的替代解决方案。光谱的可见/近红外(NIR)区域中的材料。在此框架中,AlGaAs纳米天线被证明是二次谐波辐射的极有效来源。特别地,由于该模式的特征在于散射光谱的强烈下降和近场增强,可以以偶极模式泵浦的光学系统的非线性偏振可能得到增强。另一方面,等离子纳米结构仍然是实现强大的局部电场约束的最有希望的解决方案,尤其是在近红外中,在这种近红外中,金等金属的损耗相对较低。 >结果:我们提出了一种基于AlGaAs纳米柱并被金环包围的非线性混合天线,该天线在一个平台上融合了通常由等离激元天线产生的强磁场限制,具有高非线性和低损耗特性。介电纳米天线。该平台可以增强与偶极子模式相一致的光与纳米柱的耦合,从而提高第二谐波和第三谐波的转换效率。就隔离结构而言,对于两个过程都测量了一个以上数量级的增强因子。 >结论:目前的结果表明,由于等离子体激元增强了对偶极子模式的激发,因此改善了泵浦耦合和发射效率,从而在非线性传感和光谱学领域实现了可调谐元混合器和更高分辨率的可能性纳米天线。

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