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A Nanostructure with Defect Based on Fano Resonance for Application on Refractive-Index and Temperature Sensing

机译:基于FANO共振的缺陷纳米结构用于折射率和温度传感的应用

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摘要

Herein, a nanosensor structure is proposed, which comprises metal-insulator-metal (MIM) waveguide with stub and circular ring cavity with a stub (CRCS). The phenomenon of Fano resonance appears in the transmission spectrum, which is formed by interaction between the narrowband mode of CRCS and broadband mode of stub on bus waveguide. The influence of geometric asymmetry on mode splitting of Fano resonance was discussed. The mode splitting of Fano resonance can vastly improve figure of merit (FOM) with a sight decrease of sensitivity. The best performance of the refractive-index nanosensor is attained, which is 1420 nm/RIU with a high FOM of 76.76. Additionally, the application of designed structure on temperature sensing was investigated, which has sensitivity of 0.8 nm/°C. The proposed structure also possesses potential applications on other on-chip nanosensors.
机译:在此,提出了一种纳米传感器结构,其包括具有带有短管(CRCS)的金属 - 绝缘体 - 金属(MIM)波导,具有短管(CRC)。 FANO谐振的现象出现在传输光谱中,通过在总线波导上的CRCS和宽带模式之间的窄带模式之间的相互作用形成。讨论了几何不对称对扇形谐振模式分裂的影响。 FANO谐振的模式分裂可以大大改善灵敏度降低的优点(FOM)。达到折射率纳米传感器的最佳性能,其为1420nm / Riu,具有76.76的高FOM。另外,研究了设计结构对温度感测的应用,具有0.8nm /℃的灵敏度。所提出的结构还具有在其他片上纳米传感器上的潜在应用。

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