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Silicon cuboid nanoantenna with simultaneous large Purcell factor for electric dipole, magnetic dipole and electric quadrupole emission
用于电偶极子、磁偶极子和电四极子发射的同时具有大珀塞尔因子的硅长方体纳米天线
電気双極子、磁気双極子、および電気四重極子放出のための大きなパーセル係数を同時に備えたシリコン直方体ナノアンテナ
전기 쌍극자, 자기 쌍극자 및 전기 사중극자 방출을 위한 동시에 큰 퍼셀 인자를 갖는 실리콘 입방체 나노안테나
Nanoantena cuboide de silicio con gran factor de Purcell simultáneo para emisión de dipolo eléctrico, dipolo magnético y cuadrupolo eléctrico
Nanoantenne cuboïde en silicium avec grand facteur de Purcell simultané pour dipôle électrique, dipôle magnétique et émission quadripolaire électrique
Кремниевая прямоугольная наноантенна с одновременным большим коэффициентом Парселла для электрического дипольного, магнитного дипольного и электрического квадрупольного излучения
Qiurong Deng, Jianfeng Chen 陈剑锋, Li Long 龙利, Baoqin Chen 陈宝琴, Huakang Yu 虞华康, Zhiyuan Li 李志远
School of Physics and Optoelectronics, South China University of Technology, Guangzhou 510641, China
中国 广州 华南理工大学物理与光电学院
Opto-Electronic Advances, 28 February 2022
Abstract

The Purcell effect is commonly used to increase the spontaneous emission rate by modifying the local environment of a light emitter. Here, we propose a silicon dielectric cuboid nanoantenna for simultaneously enhancing electric dipole (ED), magnetic dipole (MD) and electric quadrupole (EQ) emission.

We study the scattering cross section, polarization charge distribution, and electromagnetic field distribution for electromagnetic plane wave illuminating the silicon dielectric cuboid nanoantenna, from which we have identified simultaneous existence of ED, MD and EQ resonance modes in this nanoantenna. We have calculated the Purcell factor of ED, MD and EQ emitters with different moment orientations as a function of radiation wavelength by placing these point radiation source within the nanoantenna, respectively.

We find that the resonances wavelengths of the Purcell factor spectrum are matching with the resonance modes in the nanoantenna. Moreover, the maximum Purcell factor of these ED, MD and EQ emitters is 18, 150 and 118 respectively, occurring at the resonance wavelength of 475, 750, and 562 nm, respectively, all within the visible range. The polarization charge distribution features allow us to clarify the excitation and radiation of these resonance modes as the physical origin of large Purcell factor simultaneously occurring in this silicon cuboid nanoantenna.

Our theoretical results might help to deeply explore and design the dielectric nanoantenna as an ideal candidate to enhance ED, MD and EQ emission simultaneously with very small loss in the visible range, which is superior than the more popular scheme of plasmonic nanoantenna.
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