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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >A highly sensitive Bezier polygonal hollow core photonic crystal fiber biosensor based on surface plasmon resonance
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A highly sensitive Bezier polygonal hollow core photonic crystal fiber biosensor based on surface plasmon resonance

机译:基于表面等离子体共振的高度敏感的Bezier多边形中空核心光子晶体纤维生物传感器

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摘要

Photonic crystal fiber- based plasmonic resonance sensor for detection of refractive index variations of liquids in the range of 1.36-1.39 is proposed. The five layer air hole fiber structure, with the first inner air hole layer forming the air core using Bezier polygon, confines light in the core by the principle of photonic band gaps. Plasmon waves induced on the surface of embedded metallic gold nanowires due to the light propagating in the air core are influenced by the liquid filled in the core. The study on properties of plasmonic excitation is carried out using finite element method. Numerical investigations reveal that the sensor exhibits a high sensitivity value of 34,000 nm RIU-1 and confinement loss factor as high as 73 dB/cm is achieved. The sensor is more suitable in biosensing applications for detecting variations in refractive indices of different biochemical and chemical analytes.
机译:提出了光子晶体纤维的等离子体谐振传感器,用于检测折射率在1.36-1.39范围内的液体变化。 五层空气孔纤维结构,具有使用贝塞尔多边形形成空气芯的第一内部空气孔层,通过光子带间隙的原理限制芯中的光。 由于在空气芯中传播的光而引起的等离子体波引起的嵌入金属金纳米线的表面受到填充在芯中的液体的影响。 采用有限元法进行等离子体激发性能研究。 数值研究表明,传感器表现出高灵敏度值为34,000nm的RIU-1,并且达到高达73dB / cm的限制损失因子。 传感器更适合于生物传感应用,用于检测不同生化和化学分析物的折射率的变化。

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