Highly Sensitive D-Shaped PCF Based Plasmonic Refractive Index Sensor

Emranul Haque, A. Al Noman, S. Mahmuda, M. Hossain, N. H. Hai, Y. Namihira, Feroz Ahmed
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Abstract

A D-shaped highly sensitive plasmonic resonance sensor for low refractive index (RI) detection is proposed in this work. Plasmonic material layer and the sensing layer have been placed outside of the fiber structure in order to sense the changes in refractive index of the surrounding medium. Titanium dioxide (TiO2) is used as an adhesive agent and coated between silica glass and the plasmonic material to establish strong coupling between core mode and plasmonic mode. Proposed sensor shows maximum Wavelength Sensitivity (WS) of 75,000 nm/RIU with resolution of 1.33×10−6 RIU and maximum figure of merit (FOM) 1500 for analyte RI range of 1.25-1.40. These properties make the proposed sensor a suitable candidate for bio sensing, organic chemical sensing and other analytes detection.
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高灵敏度d形PCF等离子体折射率传感器
提出了一种用于低折射率(RI)检测的d形高灵敏度等离子体共振传感器。在光纤结构外放置等离子体材料层和传感层,以感知周围介质折射率的变化。二氧化钛(TiO2)作为胶粘剂,涂覆在硅玻璃与等离子体材料之间,建立磁芯模式与等离子体模式之间的强耦合。该传感器的最大波长灵敏度(WS)为75000 nm/RIU,分辨率为1.33×10−6 RIU,分析物RI范围为1.25-1.40,最大品质值(FOM)为1500。这些特性使所提出的传感器成为生物传感、有机化学传感和其他分析物检测的合适候选者。
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