论文标题
与等离子体纳米捕获天线的第二次谐波产生的模式匹配增强
Mode-matching enhancement of second-harmonic generation with plasmonic nanopatch antennas
论文作者
论文摘要
等离子化的非线性光学过程的血浆增强是由于金属敏感性和少量相互作用体积的强烈分散而产生的严重限制,这会阻碍类似相匹配的条件。在纳米级系统中最大化非线性相互作用需要同时激发该过程中所有涉及的波长的空间和建设性重叠的谐振模式。在这里,我们提出了一种用于最佳第二次谐波生成(SHG)的混合矩形贴片天线设计,其特征在等离子热点处的非中心对称介电/铁电材料。矩形贴片的优化允许独立调整各种共振模式,可用于增强SHG过程。我们探讨了SHG在这些杂种结构中的角度依赖性,并突出了最大SHG效率所需的条件。此外,我们提出了一种新型构型,并带有定期推销的铁电层,以在正常入射率下增强了速度的SHG。这样的平台可以使集成的纳米级光源和芯片频转换器的开发。
Plasmonic enhancement of nonlinear optical processes confront severe limitations arising from the strong dispersion of metal susceptibilities and small interaction volumes that hamper desirable phase-matching-like conditions. Maximizing nonlinear interactions in nanoscale systems require simultaneous excitation of resonant modes that spatially and constructively overlap at all wavelengths involved in the process. Here, we present a hybrid rectangular patch antenna design for optimal second harmonic generation (SHG) that is characterized by a non-centrosymmetric dielectric/ferroelectric material at the plasmonic hot spot. The optimization of the rectangular patch allows for the independent tuning of various modes of resonances that can be used to enhance the SHG process. We explore the angular dependence of SHG in these hybrid structures and highlight conditions necessary for maximal SHG efficiency. Furthermore, we propose a novel configuration with a periodically-poled ferroelectric layer for orders-of-magnitude enhanced SHG at normal incidence. Such a platform may enable the development of integrated nanoscale light sources and on-chip frequency converters.