超材料
纳米光子学
环面
电介质
硅
耗散系统
物理
纳米光刻
光电子学
光子学
偶极子
光子超材料
制作
光学
材料科学
量子力学
等离子体
医学
病理
替代医学
作者
Anar K. Ospanova,Ivan V. Stenishchev,Alexey A. Basharin
标识
DOI:10.1002/lpor.201800005
摘要
Abstract This paper is dedicated to a type of perforated silicon metamaterials, possessing anapole mode in visible spectral range due to destructive interference between electric and toroidal dipole moments. The proposed structure gains both in attainable material and simplified fabrication. Such a material exhibits a desirable physical effect and has obvious practical application: it supports the anapole mode without complicated 3D toroidal geometry and can be processed in one step by nanofabrication methods. The metamaterial paves the way for advanced optical devices on the base of all‐dielectric metamaterials. Besides inherently low dissipative losses and strong anapole response, such an optical metamaterial can demonstrate subtle sensing, nonradiative data transfer, Aharonov‐Bohm effect and other tempting applications in nanophotonics.
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