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首页> 外文期刊>Photonics and Nanostructures: Fundamentals and Applications >Tunable Fano resonance and high-sensitivity sensor with high figure of merit in plasmonic coupled cavities
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Tunable Fano resonance and high-sensitivity sensor with high figure of merit in plasmonic coupled cavities

机译:可调谐扇形谐振和高灵敏度传感器,具有高峰型耦合空腔优点

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摘要

Actively tunable sharp asymmetric line shape and high-sensitivity sensor with high figure of merit (FOM) are analytically and numerically demonstrated in plasmonic coupled cavities. The Fano resonance, originating from the interference between different light pathways, is realized and effectively tuned in on-chip nanostructure composed of metal-dielectric-metal (MDM) waveguide and a pair of cavities. To investigate in detail the Fano line shape, the coupled cavities are taken as a composite cavity, and a dynamic theory is proposed, which agrees well with the numerical simulations. Subsequently, the sensing performances of the plasmonic structure is discussed and its detection sensitivity reaches 1.103 x 10(8). Moreover, the FOM of the plasmonic sensor can approach 2.33 x 10(4). These discoveries hold potential applications for on-chip nano-sensors in highly integrated photonic devices. (C) 2017 Elsevier B.V. All rights reserved.
机译:积极可调性的尖锐不对称线形状和高灵敏度传感器,具有高价值(FOM)(FOM)在等离子体耦合腔中进行了分析和数值证明。 源自不同光通路之间的干扰的扇形共振是实现和有效调谐的由金属介质金属(MDM)波导和一对空腔组成的片上纳米结构。 为了详细研究Fano线形状,耦合腔作为复合腔,提出了一种动态理论,这与数值模拟很好。 随后,讨论了等离子体结构的感测性能,其检测灵敏度达到1.103×10(8)。 此外,等离子体传感器的FOM可以接近2.33×10(4)。 这些发现在高度集成的光子器件中保持片上纳米传感器的潜在应用。 (c)2017 Elsevier B.v.保留所有权利。

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