物理
偶极子
横截面
磁偶极子
电磁辐射
电介质
纳米光子学
电偶极矩
光学
散射
天线(收音机)
自发辐射
偶极子天线
塞尔效应
光电子学
量子力学
电信
激光器
结构工程
计算机科学
工程类
作者
Feifei Qin,Zhanyuan Zhang,Kanpei Zheng,Yi Xu,Songnian Fu,Yuncai Wang,Yuwen Qin
标识
DOI:10.1103/physrevlett.128.193901
摘要
Transverse Kerker effect is known by the directional scattering of an electromagnetic plane wave perpendicular to the propagation direction with nearly suppression of both forward and backward scattering. Compared with plane waves, localized electromagnetic emitters are more general sources in modern nanophotonics. As a typical example, manipulating the emission direction of a quantum dot is of vital importance for the investigation of on-chip quantum optics and quantum information processing. Herein, we introduce the concept of transverse Kerker effect for dipole sources utilizing a subwavelength dielectric antenna, where the radiative power of magnetic, electric, and more general chiral dipole emitters can be dominantly redirected along their dipole moments with nearly suppression of radiation perpendicular to the dipole moments. This type of transverse Kerker effect is also associated with Purcell enhancement mediated by electromagnetic multipolar resonances induced in the dielectric antenna. Analytical conditions of transverse Kerker effect are derived for the magnetic, electric, and chiral dipole emitters. We further provide microwave experiment validation for the magnetic dipole emitter. Our results provide new physical mechanisms to manipulate the emission properties of localized electromagnetic source which might facilitate the on-chip quantum optics and beyond.
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