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 >Conductive coupling for efficient generation of multiple Fano resonances in multiple two-split-ring-resonators and its application in refractive index sensor
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Conductive coupling for efficient generation of multiple Fano resonances in multiple two-split-ring-resonators and its application in refractive index sensor

机译:导电耦合,以便在折射率传感器中有效地产生多个FANO共振及其在折射率传感器中的应用

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摘要

The properties of two and three two-split-ring-resonators (TSRRs) are investigated in this paper, which shows a remarkable Fano resonance in the microwave frequency. In two TSRRs, the Fano resonance results from the interference between two TSRRs by conductive coupling, both experiments and numerical simulations are in good agreement. The structure shows strong magnetic dipole at the intersection of two TSRRs. In three TSRRs, the double Fano resonances can be excited and double magnetic dipoles produce at two intersections. Because of the interaction between two magnetic dipole, symmetric magnetic dipole and anti-symmetric magnetic dipole (toroidal dipole) modes are presented, respectively. An almost doubled Q factor is observed in the three TSRRs compared to the two TSRRs. In addition, we experimentally demonstrate that the double Fano resonances are sensitivity to the refractive index of background. The sensitivity changes with the change of position of detected material. The highly sensitive areas of double Fano resonances locate at two intersections. This study paves the way to excite the multiple Fano resonances. Such Fano resonance can be applied to the sensors.
机译:两个和三个两开口环谐振器(TSRRs)的性质在本文中,其示出了在微波频率的显着的Fano共振进行了研究。二TSRRs,从两个TSRRs通过传导耦合的干扰法诺共振的结果,这两个实验和数值模拟有较好的一致性。结构示出在两个TSRRs的交点强的磁偶极子。在三个TSRRs,双Fano的共振可以被激发和双磁偶极子在两个交叉点产生。因为两个磁偶极子,对称磁偶极子和非对称的磁偶极子(环形偶极子)的模式被呈现,分别之间的相互作用。几乎加倍Q因子在相比所述两个TSRRs三个TSRRs观察。另外,我们通过实验证明了双谐振的Fano是背景的折射率的灵敏度。灵敏度随着检测到的材料的位置的改变而改变。双法诺共振的高度敏感区域定位在两个路口。这项研究铺平了道路,以激发多重共振法诺的方式。这样的Fano共振可以被施加到传感器。

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