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Self-Reference Refractive Index Sensor Based on Independently Controlled Double Resonances in Side-Coupled U-Shaped Resonators

机译:侧耦合U形谐振器中基于独立控制双共振的自参考折射率传感器

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摘要

A plasmonic, refractive, index nanosensor is investigated theoretically and numerically in two U-shaped cavities side-coupled to a metal–dielectric–metal (MDM) waveguide. A transparency window between two transmission dips is observed. The physical origin of the transmission phenomenon is revealed by mapping the magnetic field distribution. Independent double resonances are realized through the proposed design. Double resonances showed diverse responses to the variations of the structural dimensions. In particular, they presented different dependences on a refraction index of the medium in an individual resonator. One resonance exhibited a remarkable shift with the increase of the refraction index; however, the other resonance remained unchanged. On the basis of this unique characteristic of differing sensitivities, self-reference sensing is discussed. The nanosensor yielded a high sensitivity of 917 nm/RIU and a figure of merit of 180 RIU−1. This work is helpful in terms of the design of on-chip optical sensors with high sensitivity and improved detection accuracy in complicated environments.
机译:在两个耦合到金属-电介质-金属(MDM)波导的U型腔中,从理论上和数值上研究了等离激元折射率折射率纳米传感器。观察到两个透射凹陷之间的透明窗口。通过映射磁场分布可以揭示传输现象的物理起因。通过所提出的设计实现了独立的双共振。双重共振显示出对结构尺寸变化的不同响应。特别是,它们对单个谐振器中介​​质的折射率表现出不同的依赖性。随着折射率的增加,一种共振表现出显着的偏移。但是,其他共振保持不变。基于不同灵敏度的独特特性,讨论了自参考感应。纳米传感器的灵敏度高达917 nm / RIU,品质因数为180 RIU -1 。对于在复杂环境中具有高灵敏度和改进的检测精度的片上光学传感器的设计而言,这项工作很有帮助。

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