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Design and analysis of porous core photonic crystal fiber based ethylene glycol sensor operated at infrared wavelengths

机译:在红外波长下操作的多孔芯光子晶体纤维乙二醇传感器的设计与分析

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摘要

A novel porous core photonic crystal fiber (PCF) sensor is reported for label-free detection of different concentrations of ethylene glycol present in aqueous solution, over a wavelength range from 1 to 2 mu m. Both core and cladding are designed with elliptical air holes, which are arranged in a hexagonal structure with TOPAS as the background material. Various geometrical parameters are judiciously optimized to achieve an efficient sensor. Finite element analysis is employed for numerical simulation of the proposed structure, investigating various sensing parameters including effective refractive index, effective material loss, confinement loss, nonlinearity coefficient, shifts in peak reflected wavelengths, sensitivity, f-parameter, spot size and beam divergence angle. Simulation outcomes reveal a significant shift in the sensing parameters in response to changes in concentration of ethylene glycol, confirming the effectiveness of the sensor. Optimum wavelength sensitivity of 13,144.86 nm/RIU and resolution of 7.46 x 10(-7) RIU are attained, which provide a significant theoretical foundation for the design of novel photonic sensors. Benchmarking of the proposed PCF sensor is done against related research results to prove its superiority in terms of resolution and sensitivity.
机译:报告了一种新型多孔芯光子晶体纤维(PCF)传感器,用于无标记的水溶液中存在的不同浓度的乙二醇的检测,在1至2μm的波长范围内。核心和包层都设计有椭圆形空洞,其布置在六角形结构中,作为背景材料。各种几何参数明智地优化以实现有效的传感器。有限元分析用于提出的结构的数值模拟,研究各种传感参数,包括有效的折射率,有效材料损失,限制损失,非线性系数,峰值反射波长,灵敏度,F参数,光束尺寸和光束发散角的变化。仿真结果揭示了感测参数的显着变化响应乙二醇浓度的变化,证实了传感器的有效性。达到最佳波长灵敏度为13,144.86nm / RiU和7.46×10(-7)Riu的分辨率,为新颖的光子传感器设计提供了显着的理论基础。提出的PCF传感器的基准是针对相关的研究结果完成的,以证明其在分辨率和敏感性方面的优越性。

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