Yao Kan, Zheng Yuebing
Opt Lett. 2021 Jan 15;46(2):302-305. doi: 10.1364/OL.411352.
We present a theoretical study of directional light emission by dipole emitters near a spherical nanoparticle. Our analysis is extended from an exact electrodynamical approach for solving the coupling between a dipole and a sphere, providing a full picture of the directional emission for a complete set of combinations of variable emitters, particles, and their orientations. In particular, we show that the Mie resonances of a dielectric sphere are strongly influenced by the coupled dipole emitter, leading to the scattering properties that are different from the prediction by the standard Mie theory. Moreover, we demonstrate that the dielectric spheres have opposite effects on the emission direction and a decay rate of electric and magnetic dipoles. Our approach enriches the analytical toolbox for designing optical antennas and understanding dipole-sphere coupling.
我们对球形纳米粒子附近偶极子发射器的定向光发射进行了理论研究。我们的分析是从解决偶极子与球体之间耦合的精确电动力学方法扩展而来的,它为可变发射器、粒子及其取向的完整组合集提供了定向发射的全貌。特别是,我们表明介电球体的米氏共振受到耦合偶极子发射器的强烈影响,导致散射特性与标准米氏理论的预测不同。此外,我们证明介电球体对电偶极子和磁偶极子的发射方向和衰减率有相反的影响。我们的方法丰富了用于设计光学天线和理解偶极子 - 球体耦合的分析工具箱。