论文标题
在近红外共鸣的单金属纳米腔的增强的非线性光学响应
Enhanced nonlinear optical response of single metal-dielectric nanocavities resonating in the near-infrared
论文作者
论文摘要
谐波生成机制对纳米科学和纳米技术引起了极大的兴趣,因为它们可以通过使用近红外辐射来产生可见光,这特别适合其在生物纳米素中的无尽应用和光电电子学。在这种情况下,多层金属丝纳米腔被广泛用于纳米级的光线限制和波形。它们表现出强烈和局部的共振,可以方便地在近红外调节,因此非常适合在此光谱范围内增强非线性效应。在这项工作中,我们通过实验研究了多层金属纳米腔的非线性光学响应。通过设计其吸收效率并利用其内在界面引起的对称性破坏,我们与具有相同几何形状和谐振行为的金纳米结构相比,获得了一个数量级高的第二谐波发电效率。特别是,虽然三阶非线性敏感性与大量AU相当,但我们估计1 pm/v阶的二阶非线性敏感性,这与典型的非线性晶体相当。我们设想,我们的系统结合了等离子和介电材料的优势,可以实现复合和多功能纳米系统,以有效地操纵纳米级非线性光学过程。
Harmonic generation mechanisms are of great interest in nanoscience and nanotechnology, since they allow generating visible light by using near-infrared radiation, which is particularly suitable for its endless applications in bio-nanophotonics and opto-electronics. In this context, multilayer metal-dielectric nanocavities are widely used for light confinement and waveguiding at the nanoscale. They exhibit intense and localized resonances that can be conveniently tuned in the near-infrared and are therefore ideal for enhancing nonlinear effects in this spectral range. In this work, we experimentally investigate the nonlinear optical response of multilayer metal-dielectric nanocavities. By engineering their absorption efficiency and exploiting their intrinsic interface-induced symmetry breaking, we achieve one order of magnitude higher second-harmonic generation efficiency compared to gold nanostructures featuring the same geometry and resonant behavior. In particular, while the third order nonlinear susceptibility is comparable with that of bulk Au, we estimate a second order nonlinear susceptibility of the order of 1 pm/V, which is comparable with that of typical nonlinear crystals. We envision that our system, which combines the advantages of both plasmonic and dielectric materials, might enable the realization of composite and multi-functional nano-systems for an efficient manipulation of nonlinear optical processes at the nanoscale.