Spontaneous emission enhancement of quantum emitter using resonant Kerker condition in high refractive index metasurfaces

Megha Khokhar, F. Inam, R. V. Nair
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Abstract

The unidirectional scattering of high index metasurfaces is explored at Kerker condition using numerical simulations. We obtained the generalized first Kerker condition for an array of Silicon disks on a dielectric substrate that shows complete forward scattering using the multipole expansion method. We observe a significant Purcell enhancement for the quantum emitter embedded in the disk with emission wavelength overlapping with Kerker condition with a directional emission pattern. We also observed that this enhancement largely depends on the emitter's location and can be further engineered with the refractive index of disks.
利用共振Kerker条件增强高折射率超表面中量子发射器的自发发射
利用数值模拟研究了高折射率超表面在Kerker条件下的单向散射。利用多极展开法,得到了介质衬底上具有完全正向散射的硅片阵列的广义第一Kerker条件。我们观察到嵌入在光盘中的量子发射器具有明显的Purcell增强,其发射波长与Kerker条件重叠,具有定向发射模式。我们还观察到这种增强在很大程度上取决于发射器的位置,并且可以进一步设计与圆盘的折射率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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