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Simulation and analysis of sensitivity for tapered fiber Bragg grating evanescent wave sensor

机译:锥形光纤布拉格光栅e逝波传感器灵敏度的仿真分析

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摘要

We have carried out a detailed simulative study of the tapered fiber Bragg grating (TFBG) evanescent wave sensor sensitivity by using 3-D Coupled-Mode Theory method. The method is based on the spectral interrogation mode of operation. We also make numerical simulations to figure out how the uniform waist diameter and the difference of the relative refractive indexes between fiber core and external medium affect the sensitivity of this proposed sensor. The simulation results show that the sensitivity of the tapered fiber Bragg grating will be improved when the diameter of the uniform waist decrease as well as the difference of the relative refractive indexes between fiber core and external medium. And with the fixed uniform waist diameter and tapered length, when the difference of the relative refractive index of fiber core and external medium varies is 0.015RIU, the values of wavelength shift is 5.08nm, the sensitivity of the tapered fiber Bragg grating is 317.5nm/RIU. The sensitivity is higher than that of the common FBG The results are consistent with theoretical models. The simulation results can supply the guidance for the further experimental study and refractive index sensor design, optimization and application.
机译:我们使用3-D耦合模式理论方法对锥形光纤布拉格光栅(TFBG)escent逝波传感器的灵敏度进行了详细的模拟研究。该方法基于频谱询问操作模式。我们还进行了数值模拟,以弄清楚均匀的腰围直径以及纤芯和外部介质之间的相对折射率的差异如何影响此传感器的灵敏度。仿真结果表明,当均匀腰部直径减小以及纤芯与外部介质之间的相对折射率差减小时,锥形光纤布拉格光栅的灵敏度将得到提高。在固定的均匀腰围直径和锥形长度的情况下,当纤芯和外部介质的相对折射率之差变化为0.015RIU时,波长偏移值为5.08nm,锥形光纤布拉格光栅的灵敏度为317.5nm / RIU。灵敏度高于普通FBG。结果与理论模型一致。仿真结果可为进一步的实验研究和折射率传感器的设计,优化和应用提供指导。

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