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Characteristics of plasmon coupling mode in SPR based LPFG

机译:基于SPR的LPFG中的等离激元耦合模式的特征

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Based on mode coupled theory, this paper investigates the coupled characteristics and the excitation conditions of the surface plasmon mode in the structure of SPR based LPFG coated with metal film, and analyzes the strain sensing properties of this LPFG. Firstly, according to the properties of surface plasmon wave (SPW) in a cylindrical waveguide, SPW electromagnetic field distribution in the LPFG coated with metal film can be obtained by solving the electromagnetic wave equation. Using the coupled-mode theory, the coupled-mode equations of SPR based LPFG is derived and set up, and the coupled conditions between the core mode and SPW are given. Further, transmission spectra of LPFG coated with metal film can be obtained by solving coupled-mode equation, the results show that the SPR peak is generated by the coupling of core mode and SPW. By analyzing the influence of grating period on the SPR peak, it can be known the tiny change of the grating period will cause obvious deviation of the SPR peak. So this structure of SPR based LPFG is very suitable for strain sensor. Further calculation shows the strain sensitivity can reach 2.04 pm/με, superior to the traditional LPFG sensors.
机译:基于模式耦合理论,研究了表面等离子体激元模式在金属膜涂覆的基于SPR的LPFG结构中的耦合特性和激发条件,并分析了该LPFG的应变传感特性。首先,根据圆柱波导中的表面等离激元波(SPW)的性质,通过求解电磁波方程,可以得到在覆有金属膜的LPFG中SPW的电磁场分布。利用耦合模理论,推导并建立了基于SPR的LPFG的耦合模方程,给出了核心模与SPW之间的耦合条件。进而,通过求解耦合模方程,可以得到镀有金属薄膜的LPFG的透射光谱,结果表明,SPR峰是由芯模和SPW的耦合产生的。通过分析光栅周期对SPR峰的影响,可以知道,光栅周期的微小变化将引起SPR峰的明显偏离。因此,基于SPR的LPFG的这种结构非常适合应变传感器。进一步的计算表明,应变灵敏度可以达到2.04 pm /με,优于传统的LPFG传感器。

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