Hsu Liyi, Baida Fadi I, Ndao Abdoulaye
Opt Express. 2021 Jan 18;29(2):1102-1108. doi: 10.1364/OE.415956.
Over the last few years, optical nanoantennas are continuously attracting interest owing to their ability to efficiently confine, localize resonance, and significantly enhanced electromagnetic fields at a subwavelength scale. However, such strong confinement can be further enhanced by using an appropriate combination of optical nanoantennas and Slanted Bound states in the continuum cavities. Here, we propose to synergistically bridge the plasmonic nanoantennas and high optical quality-factor cavities to numerically demonstrate six orders of magnitude local intensity enhancement without critical coupling conditions. The proposed hybrid system paves a new way for applications requiring highly confined fields such as optical trapping, optical sensing, nonlinear optics, quantum optics, etc.
在过去几年中,光学纳米天线因其能够在亚波长尺度上高效地限制、局部化共振并显著增强电磁场的能力而不断吸引着人们的关注。然而,通过使用光学纳米天线和连续腔中的倾斜束缚态的适当组合,可以进一步增强这种强限制。在这里,我们提出将等离子体纳米天线和高光学品质因数腔协同结合,以数值证明在没有临界耦合条件下局部强度增强六个数量级。所提出的混合系统为诸如光学捕获、光学传感、非线性光学、量子光学等需要高度限制场的应用开辟了一条新途径。