多极展开
材料科学
极化(电化学)
偶极子
环面
纳米光子学
电介质
光电子学
光学
吸收(声学)
共振(粒子物理)
硅
分子物理学
原子物理学
物理
等离子体
物理化学
化学
量子力学
作者
Hiroaki Hasebe,Hiroshi Sugimoto,Tatsuki Hinamoto,Minoru Fujii
标识
DOI:10.1002/adom.202001148
摘要
Abstract Besides the fundamental Mie resonance modes of high‐index dielectric nanostructures, an extended multipole family, i.e., toroidal multipoles, provide great opportunities for engineering a new class of nanophotonic devices. Here, it is demonstrated theoretically and experimentally that a hexagonal array of circular silicon (Si) nanodisks (NDs) supports intra‐ and inter‐ND toroidal dipole (TD) modes. The key concept is the alignment of Si NDs near the anapole state condition for constructive interaction of the TD modes between neighboring NDs. Numerical simulation reveals that strong field confinement by the coupled TD modes enhances the absorption 120‐fold at the resonance wavelength compared to that of a flat Si film with the same thickness. In this study, macroscopic scale hexagonal Si ND arrays are fabricated using a colloidal lithography, and spectrally selective absorption enhancement due to the TD modes is demonstrated. Furthermore, it is demonstrated that a dipolar emitter can also excite TD modes, which modify the spectral shape and the directionality of the emission.
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