Xiao Fajun, Cao Shiyin, Shang Wuyun, Zhu Weiren, Han Lei, Mei Ting, Premaratne Malin, Zhao Jianlin
Opt Lett. 2019 Aug 1;44(15):3813-3816. doi: 10.1364/OL.44.003813.
Boosting the nonlinear conversion rate in nanoscale is pivotal for practical applications such as highly sensitive biosensors, extreme ultra-violate light sources, and frequency combs. Here, we theoretically study the enhancement of second-harmonic generation (SHG) in a plasmonic trimer assisted by breathing modes. The geometry of the trimer is fine-tuned to produce strong plasmonic resonances at both the fundamental and SH wavelengths to boost SHG intensity. Moreover, it is found that breathing modes show remarkable ability to augment SHG by increasing the enhancement area. In particular, these breathing modes ensure a substantial spatial mode overlap at the fundamental and SH wavelengths, resulting in further promotion of the SHG conversation rate. We envision that our findings could enable applications in nanoscale frequency converters with high efficiency.
提高纳米尺度下的非线性转换率对于诸如高灵敏度生物传感器、极紫外光源和频率梳等实际应用至关重要。在此,我们从理论上研究了呼吸模式辅助下等离子体三聚体中二次谐波产生(SHG)的增强。对三聚体的几何结构进行微调,以在基波和SH波长处产生强烈的等离子体共振,从而提高SHG强度。此外,发现呼吸模式通过增加增强区域展现出显著增强SHG的能力。特别地,这些呼吸模式确保了在基波和SH波长处有大量的空间模式重叠,从而进一步提高了SHG转换率。我们设想,我们的发现能够推动高效纳米尺度频率转换器的应用。