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A Highly Sensitive Gold-Coated Photonic Crystal Fiber Biosensor Based on Surface Plasmon Resonance

机译:基于表面等离子体共振的高灵敏度镀金光子晶体光纤生物传感器

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In this paper, we numerically demonstrate a two-layer circular lattice photonic crystal fiber (PCF) biosensor based on the principle of surface plasmon resonance (SPR). The finite element method (FEM) with circular perfectly matched layer (PML) boundary condition is applied to evaluate the performance of the proposed sensor. A thin gold layer is deposited outside the PCF structure, which acts as the plasmonic material for this design. The sensing layer (analyte) is implemented in the outermost layer, which permits easy and more practical fabrication process compared to analyte is put inside the air holes. It is demonstrated that, at gold layer thickness of 40 nm, the proposed sensor shows maximum sensitivity of 2200 nm/RIU using the wavelength interrogation method in the sensing range between 1.33–1.36. Besides, using an amplitude interrogation method, a maximum sensitivity of 266 RIU ?1 and a maximum sensor resolution of 3.75 × 10 ?5 RIU are obtained. We also discuss how phase matching points are varied with different fiber parameters. Owing to high sensitivity and simple design, the proposed sensor may find important applications in biochemical and biological analyte detection.
机译:在本文中,我们基于表面等离振子共振(SPR)的原理,以数值方式演示了两层圆形晶格光子晶体光纤(PCF)生物传感器。采用圆形完美匹配层(PML)边界条件的有限元方法(FEM)来评估所提出传感器的性能。在PCF结构外部沉积了一层薄薄的金层,该层用作该设计的等离子体材料。感测层(分析物)位于最外层,与将分析物放入气孔内相比,该方法可简化工艺,并且更加实用。结果表明,在波长为40 nm的金层上,使用波长询问方法,所建议的传感器在1.33–1.36的感测范围内显示出2200 nm / RIU的最大灵敏度。此外,使用幅度询问法,可获得最大灵敏度为266 RIUα1和最大传感器分辨率为3.75×10×5 RIU。我们还将讨论相位匹配点如何随不同的光纤参数而变化。由于灵敏度高和设计简单,所提出的传感器可能在生化和生物分析物检测中找到重要的应用。

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