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High Quality Plasmonic Sensors Based on Fano Resonances Created through Cascading Double Asymmetric Cavities

机译:基于级联双不对称腔产生的法诺共振的高质量等离子传感器

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In this paper, a type of compact nanosensor based on a metal-insulator-metal structure is proposed and investigated through cascading double asymmetric cavities, in which their metal cores shift along different axis directions. The cascaded asymmetric structure exhibits high transmission and sharp Fano resonance peaks via strengthening the mutual coupling of the cavities. The research results show that with the increase of the symmetry breaking in the structure, the number of Fano resonances increase accordingly. Furthermore, by modulating the geometrical parameters appropriately, Fano resonances with high sensitivities to the changes in refractive index can be realized. A maximum figure of merit (FoM) value of 74.3 is obtained. Considerable applications for this work can be found in bio/chemical sensors with excellent performance and other nanophotonic integrated circuit devices such as optical filters, switches and modulators.
机译:本文提出了一种基于金属-绝缘体-金属结构的紧凑型纳米传感器,并通过级联双不对称腔体对其进行研究,该腔体的金属芯沿不同轴方向移动。级联的不对称结构通过增强型腔的相互耦合表现出高透射率和尖锐的Fano共振峰。研究结果表明,随着结构对称性破坏的增加,Fano共振次数随之增加。此外,通过适当地调节几何参数,可以实现对折射率变化具有高灵敏度的Fano共振。获得的最大品质因数(FoM)值为74.3。在具有出色性能的生物/化学传感器以及其他纳米光子集成电路器件(如光学滤波器,开关和调制器)中,可以找到这项工作的大量应用。

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