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Investigation of Grating Parameters Impact on Spectral Characteristics of LPFG using Two-Layer Fiber Geometry

机译:使用双层光纤几何对光栅参数对LPFG光谱特性的影响

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The study on spectral characteristics of long period fiber grating (LPFG) explores its usefulness in many applications. This scenario insists the researchers to calculate the impact of LPFG’s parameters on its characteristics. The paper presents the effect of grating length and grating period on the spectral characteristics of LPFG. Their impact is calculated in terms of variation in position of resonant wavelength and attenuation band depth. For this, the transmission profiles of LP03 and LP05 cladding modes are kept under observation here. The spectral profiles are calculated using analytical expressions obtained through coupled mode theory. The two layer fiber geometrical model is implemented on SMF28 optical fiber parameters to evaluate propagation constants of fiber’s core region’s and cladding region’s modes. The results show linear increase in attenuation depth of spectrum with increase in grating length. On the other hand, with the rise in periodicity the shift in resonant wavelength is towards longer wavelengths.
机译:长周期光纤光栅(LPFG)的光谱特性研究探讨了许多应用中的有用性。这种情况坚持研究人员计算LPFG参数对其特性的影响。本文提出了光栅长度和光栅期对LPFG光谱特性的影响。它们的影响是根据谐振波长和衰减带深的位置的变化来计算的。为此,LP的传输配置文件 03 和LP. 05 在此处保持覆层模式。使用通过耦合模式理论获得的分析表达式计算光谱分布。两层光纤几何模型在SMF28光纤参数上实现,以评估光纤核心区域和包层模式的传播常数。结果表明,光栅长度的增加,衰减深度的线性增加。另一方面,随着周期性的上升,谐振波长的变化是朝向更长的波长。

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