Directional surface plasmon polariton scattering using single magnetic nanoparticles

Author:

Sun Xuqing1,Wang Fei1,Sun Xiaojuan1,Wang Xue1,Cao Yitao1,Ding Xiaoxi1,Dou Yingjie1,Fang Runze1,Wang Chang1,Liu Hongyao,Lu XinchaoORCID,Gao Hang,Huang Chengjun1

Affiliation:

1. University of Chinese Academy of Sciences

Abstract

Directional surface plasmon polaritons (SPPs) are expected to promote the energy efficiency of plasmonic devices, via limiting the energy in a given spatial domain. The directional scattering of dielectric nanoparticles induced by the interference between electric and magnetic responses presents a potential candidate for directional SPPs. Magnetic nanoparticles can introduce permeability as an extra manipulation, whose directional scattered SPPs have not been investigated yet. In this work, we demonstrated the directional scattered SPPs by using single magnetic nanoparticles via simulation and experiment. By increasing the permeability and particle size, the high-order TEM modes are excited inside the particle and induce more forward directional SPPs. It indicated that the particle size manifests larger tuning range compared with the permeability. Experimentally, the maximum forward-to-backward (F-to-B) SPP scattering intensity ratio of 118.52:1 is visualized by using a single 1 μm Fe3O4 magnetic nanoparticle. The directional scattered SPPs of magnetic nanoparticles are hopeful to improve the efficiency of plasmonic devices and pave the way for plasmonic circuits on-chip.

Funder

National Natural Science Foundation of China

CAS-CSIRO Partnership Joint Project

Publisher

Optica Publishing Group

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