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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Polarization-independent Fano metasurface with directional toroidal dipole for magnetic field tunability
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Polarization-independent Fano metasurface with directional toroidal dipole for magnetic field tunability

机译:偏振无关的Fano Metasurface,具有定向环形偶极子,用于磁场可调性

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摘要

We have designed and numerically investigated an all-dielectric metasurface consisting of four nanorings located apart with a cross nanobar resonator in between, which supports polarization-independent Fano resonance arising from destructive interference between electric and toroidal dipole moments. Exploiting polarization dependency of toroidal dipole, the polarization of incident light can actively control the direction of toroidal dipole but does not affect Fano resonance. Moreover, our results also manifest that local magnetic field can be dynamically switched on and off based on directional toroidal dipole while maintaining polarization-independent Fano resonance, indicating potential application in efficient switch, light trapping and magnetic hot-spot generation.
机译:我们已经设计和数值研究了由四个纳米的全电介质元表面组成,其中四个纳米与纳米柱谐振器之间,其在电动和环形偶极偶像之间的破坏性干扰中支持极化无关的扇形谐振。 开发环形偶极子的偏振依赖性,入射光的极化可以主动控制环形偶极子的方向,但不影响FANO共振。 此外,我们的结果也表明,基于定向环形偶极子,可以在保持偏振的扇形谐振的同时动态地接通和断开局部磁场,指示在高效的开关,光捕获和磁热点产生中的潜在应用。

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