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Highly Sensitive Localized Surface Plasmon Polariton Based D-Type Twin-Hole Photonic Crystal Fiber Microbiosensor: Enhanced Scheme for SERS Reinforcement

机译:高敏感的局部表面等离子体基于POLATITON的D型双孔光子光子晶体微观型传感器:SERS加固方案

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摘要

The emerging development of sensing technology initiates innovative sensors achieving low-cost to facilitate practical realization. An interesting crush of the work is to propose a simple structural sensor and to analyze the different schemes of the metal coating by stimulated emission of Raman scattering (SERS) intensification. For the first time, we propose a simple geometrical photonic crystal fiber refractive index based sensor (PCF-RIBS) with three different Schemes A, B, and C, i.e., gold (A) layer-coated surface plasmon resonance (SPR) based D-type PCF-RIBS; Au with titanium-di-oxide (TiO2) layer-coated SPR D-type PCF-RIBS; and Au + TiO2 grating-coated localized surface plasmon resonance (LSPR) D-type PCF-RIBS. Characterizing the three different Schemes A, B, and C using finite element method simulation shows, a maximum wavelength sensitivity of 48,000 nm/RIU, 52,000 nm/RIU and 75,000 nm/RIU, respectively, for a wide range of analyte-refractive index from 1.33 to 1.45 and operates in the wavelength range from 500–2000 nm. Of all the Schemes, Scheme C is found to excite a relatively larger number of surface-plasmons. Eventually, it exhibits improved sensing performances compared to SPR based Schemes A and B. Consequently, it would turn out to be an appropriate candidate to detect a broad range of biological and chemical sample detection.
机译:感应技术的新兴发展发起了创新的传感器,实现了低成本,以促进实际实现。这项工作的有趣粉碎是提出一个简单的结构传感器,并通过刺激拉曼散射(SERS)强化来分析金属涂层的不同方案。我们首次提出简单的几何光子晶体纤维折射率基于基于的传感器(PCF-肋),具有三种不同的方案A,B和C,即金(A)层涂层表面等离子体谐振(SPR)的D. -type pcf-rougs;钛 - 二氧化硅(TiO2)层涂层SPR D型PCF-肋的Au;和Au + TiO2光栅涂层局部等离子体共振(LSPR)D型PCF-肋。使用有限元方法模拟表征三种不同的方案A,B和C,分别为48,000nm / Riu,52,000nm / Riu和75,000nm / Riu的最大波长灵敏度,用于各种分析物折射率1.33至1.45,在波长范围内工作从500-2000 nm。在所有方案中,发现方案C激发相对较大数量的表面等离子体。最终,与基于SPR的方案A和B相比,它表现出改善的感测性能。因此,它将成为检测广泛的生物和化学样品检测的适当候选者。

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