Multipolar Analysis in Symmetrical Meta-Atoms Sustaining Fano Resonances

Optics Pub Date : 2024-04-15 DOI:10.3390/opt5020017
Vittorio Bonino, Angelo Angelini
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引用次数: 0

Abstract

We present an optical metasurface with symmetrical individual elements sustaining Fano resonances with high Q-factors. This study combines plane-wave illumination and modal analysis to investigate the resonant behavior that results in a suppression of the forward scattering, and we investigate the role of the lattice constant on the excited multipoles and on the spectral position and Q-factor of the Fano resonances, revealing the nonlocal nature of the resonances. The results show that the intrinsic losses play a crucial role in modulating the resonance amplitude in specific conditions and that the optical behavior of the device is extremely sensitive to the pitch of the metasurface. The findings highlight the importance of near-neighbor interactions to achieve high Q resonances and offer an important tool for the design of spectrally tunable metasurfaces using simple geometries.
维持法诺共振的对称元原子的多极分析
我们提出了一种具有对称单个元素的光学元表面,它能以高 Q 因子维持法诺共振。这项研究结合了平面波照明和模态分析来研究导致前向散射抑制的共振行为,我们还研究了晶格常数对激发多极子以及法诺共振的光谱位置和 Q 因子的作用,揭示了共振的非局部性。结果表明,在特定条件下,内在损耗在调节共振频率方面起着至关重要的作用,而且器件的光学行为对元表面的间距极为敏感。这些发现强调了近邻相互作用对实现高 Q 值共振的重要性,并为利用简单几何结构设计光谱可调的元表面提供了重要工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
2.20
自引率
0.00%
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0
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