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Highly sensitive refractive index sensor based on hybrid plasmonic waveguide microring resonator

机译:基于混合等离子体波导微管谐振器的高灵敏度折射率传感器

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摘要

A refractive index (RI) sensor based on straight silicon strip waveguide and a hybrid plasmonic microring resonator is presented. The hybrid waveguide is made up of a Metal-Air-Silicon structure, where the electric field is significantly enhanced in the narrow air gap. The transmission spectrum and electric field distribution of this sensor structure are simulated using Finite Element Method (FEM). Due to a large overlap of the optical field in the hybrid microring resonator and the sensing medium, this sensor can be used for both gas and bio sensing applications. The best sensitivity of 690 nm/RIU and 401 nm/RIU is obtained for gas and bio sensing, respectively. The obtained values are relatively high as compared to conventional dielectric microring resonator sensors. Our proposed sensor design has a potential to find further applications in biomedical science and nanophotonic circuits.
机译:提出了一种基于直硅条波导和混合等离子体微管谐振器的折射率(RI)传感器。 混合波导由金属 - 空气 - 硅结构组成,其中电场在窄气隙中显着提高。 使用有限元方法(FEM)模拟该传感器结构的透射光谱和电场分布。 由于混合型微管谐振器和传感介质中的光学场的大重叠,该传感器可用于气体和生物传感应用。 分别获得690nm / Riu和401nm / Riu的最佳敏感性,分别用于气体和生物感测。 与传统的介电微管谐振器传感器相比,所获得的值相对较高。 我们所提出的传感器设计有可能在生物医学科学和纳米光电电路中找到进一步的应用。

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