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Hybrid plasmonic waveguide-assisted Metal-Insulator-Metal ring resonator for refractive index sensing

机译:用于折射率传感的混合等离子体波导辅助金属 - 绝缘子 - 金属环谐振器

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摘要

A highly sensitive refractive index sensor based on an integrated hybrid plasmonic waveguide (HPWG) and a Metal-Insulator-Metal (M-I-M) micro-ring resonator is presented. In our design, there are two slot-waveguide-based micro-rings that encircle a gold disc. The outer slot WG is formed by the combination of Silicon-Air-Gold ring and the inner slot-waveguide is formed by Gold ring-Air-Gold disc. The slot-waveguide rings provide an interaction length sufficient to accumulate a detectable wavelength shift. The transmission spectrum and electric field distribution of this sensor structure are simulated using Finite Element Method (FEM). The sensitivity of this micro-ring resonator is achieved at 800nm/RIU which is about six times higher than that of the conventional Si ring with the same geometry. Our proposed sensor design has a potential to find further applications in biomedical science and nano-photonic circuits.
机译:呈现了一种基于集成的混合等离子体波导(HPWG)和金属绝缘体 - 金属(M-I-M)微环谐振器的高灵敏度折射率传感器。 在我们的设计中,有两个基于插槽的槽面微圈,围绕金盘。 外槽WG通过硅 - 空气 - 金环的组合形成,并且内槽 - 波导由金环 - 空气金盘形成。 槽 - 波导环提供足以累积可检测波长偏移的相互作用长度。 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。 该微环谐振器的灵敏度在800nm / RiU的800nm / RiU上实现,其比具有相同几何形状的传统Si环高出大约六倍。 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子电路中找到进一步的应用。

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