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Multiple Fano-Like MIM Plasmonic Structure Based on Triangular Resonator for Refractive Index Sensing

机译:基于三角共振器的多重Fano类MIM等离子体结构用于折射率传感

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摘要

In this paper, we present a Fano metal-insulator-metal (MIM) structure based on an isosceles triangular cavity resonator for refractive index sensing applications. Due to the specific feeding scheme and asymmetry introduced in the triangular cavity, the resonator exhibits four sharp Fano-like resonances. The behavior of the structure is analyzed in detail and its sensing capabilities demonstrated through the responses for various refractive indices. The results show that the sensor has very good sensitivity and maximal figure of merit (FOM) value of 3.2 × 105. In comparison to other similar sensors, the proposed one has comparable sensitivity and significantly higher FOM, which clearly demonstrates its high sensing potential.
机译:在本文中,我们提出了一种基于等腰三角形空腔谐振器的Fano金属-绝缘体-金属(MIM)结构,用于折射率传感应用。由于在三角形腔体中引入了特定的馈电方案和不对称性,因此谐振器表现出四个尖锐的Fano类谐振。详细分析了该结构的行为,并通过对各种折射率的响应证明了其感应能力。结果表明,该传感器具有很好的灵敏度,最大品质因数(FOM)值为3.2×10 5 。与其他类似的传感器相比,拟议中的传感器具有相当的灵敏度和明显更高的FOM,这清楚地证明了其高传感潜力。

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