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基于孔径的三次谐波产生中的局域化和传播表面等离子体共振

Localized and propagating surface plasmon resonances in aperture-based third harmonic generation.

作者信息

Nezami Mohammadreza S, Gordon Reuven

出版信息

Opt Express. 2015 Dec 14;23(25):32006-14. doi: 10.1364/OE.23.032006.

Abstract

We investigate the influence of localized and propagating surface plasmons on third harmonic generation from rectangular apertures in metal films. We designed optimal aperture array structures by using finite-difference time-domain simulations with nonlinear scattering theory. From this design space, we fabricated and measured the third harmonic in the region of maximal performance. We find the highest third harmonic conversion efficiency when the localized resonance is tuned to the fundamental wavelength and the propagating (Bragg) resonance is tuned to the third harmonic; this is 2.5 times larger than the case where the both localized and propagating are tuned to the fundamental wavelength. The two remaining configurations where also investigated with much lower conversion efficiency. When the Bragg resonance is tuned to the third harmonic, directivity improves the collection of third harmonic emission. On the other hand, due to the inherent absorption of gold at the third harmonic, tuning the localized surface plasmon resonance to the third harmonic is less beneficial. All cases showed quantitative agreement with the original theoretical analysis. This work points towards an optimal design criterion for harmonic generation from thin plasmonic metasurfaces.

摘要

我们研究了局域表面等离子体激元和传播表面等离子体激元对金属薄膜中矩形孔径产生三次谐波的影响。我们利用有限时域差分模拟结合非线性散射理论设计了最优孔径阵列结构。从这个设计空间出发,我们制作并测量了处于最佳性能区域的三次谐波。我们发现,当将局域共振调谐到基波波长且将传播(布拉格)共振调谐到三次谐波时,三次谐波转换效率最高;这比将局域和传播共振都调谐到基波波长的情况高出2.5倍。我们还研究了另外两种转换效率低得多的配置。当布拉格共振调谐到三次谐波时,方向性提高了三次谐波发射的收集效率。另一方面,由于金在三次谐波处的固有吸收,将局域表面等离子体激元共振调谐到三次谐波的益处较小。所有情况都与原始理论分析在定量上相符。这项工作为薄等离子体超表面产生谐波指明了一个最优设计准则。

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