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用深亚波长局域赝表面等离激元结构调谐磁电相干共振。

Tuning magneto-electric coherent resonance with a deep-subwavelength localized spoof surface plasmonic structure.

出版信息

Opt Lett. 2023 Feb 15;48(4):855-858. doi: 10.1364/OL.480451.

Abstract

It has been recently shown that an ultrathin corrugated spiral metal strip can simultaneously support electric and magnetic localized spoof plasmonic modes at lower frequencies. In this Letter, we report a mirror quasi-symmetrical corrugated spiral metal disk which can support coherent resonance of an orthogonal electric dipole and a magnetic dipole to achieve azimuthally symmetric unidirectional scattering. By tuning the geometric dimensions, reconfigurable magneto-electric (ME) coherent resonance enhancement is realized. Excellent agreement between numerical simulations and experimental results verifies the tunable ME coherent resonance phenomenon. Our finding could anticipate future sensitive and versatile functional devices based on high-Q coherent resonance from the microwave to the terahertz bands.

摘要

最近有人指出,超薄波纹螺旋金属带可以在较低频率下同时支持电和磁局域赝等离子体模式。在这封信件中,我们报告了一种镜像准对称波纹螺旋金属盘,它可以支持正交电偶极子和磁偶极子的相干共振,以实现各向同性的单向散射。通过调整几何尺寸,实现了可重构的磁电(ME)相干共振增强。数值模拟和实验结果之间的良好一致性验证了可调谐 ME 相干共振现象。我们的发现可以预见从微波到太赫兹波段的基于高 Q 相干共振的敏感且多功能的功能器件。

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