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A Simple Gold-Coated Photonic Crystal Fiber Based Plasmonic Biosensor

机译:一个简单的镀金光子晶体光纤等离子生物传感器。

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摘要

In this paper, a simple gold-coated circular photonic crystal fiber (PCF) based surface plasmon resonance sensor (SPR) is numerically proposed. The proposed sensor is not very susceptible to the variation of structural parameters in the case of confirmation of sensing accuracy. Consequently, it minimizes the machining error. The sensing performance of this sensor is analyzed by the finite element method (FEM). A maximal wavelength sensitivity of 8000 nm/RIU can be realized with the refractive index of 1.38. The average wavelength sensitivity of 3142.9 nm/RIU and amplitude sensitivity of 80.29 RIU-1 in the range of 1.33-1.38. Moreover, the investigation shows that a maximal amplitude sensitivity of 198 RIU-1 and resolution of 1.25×10-5 RIU can also be achieved with the same RI. Owing to these characteristics of simple structure, linear characteristics and high sensitivity, the introduced device can be a potential candidate in the field of biological applications.
机译:本文提出了一种基于镀金的圆形圆形光子晶体光纤(PCF)的简单表面等离子体共振传感器(SPR)。在确认传感精度的情况下,提出的传感器不太容易受到结构参数变化的影响。因此,它使加工误差最小。该传感器的感测性能通过有限元方法(FEM)进行分析。折射率为1.38时,可以实现8000 nm / RIU的最大波长灵敏度。平均波长灵敏度为3142.9 nm / RIU,幅度灵敏度为80.29 RIU \ n -1\n,范围为1.33-1.38。此外,研究表明,最大幅度灵敏度为198 RIU \ n -1\n,分辨率为1.25×10 \ n -5 \ n也可以使用相同的RI实现RIU。由于具有简单的结构,线性的特性和高灵敏度的这些特征,所引入的装置可以成为生物应用领域中的潜在候选者。

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