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首页> 外文期刊>Applied optics >Numerical model of tapered fiber Bragg gratings for comprehensive analysis and optimization of their sensing and strain-induced tunable dispersion properties
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Numerical model of tapered fiber Bragg gratings for comprehensive analysis and optimization of their sensing and strain-induced tunable dispersion properties

机译:锥形光纤布拉格光栅的数值模型,用于对其感测和应变引起的可调色散特性进行综合分析和优化

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摘要

A versatile numerical model for spectral transmission/reflection, group delay characteristic analysis, and design of tapered fiber Bragg gratings (TFBGs) is presented. This approach ensures flexibility with defining both distribution of refractive index change of the gratings (including apodization) and shape of the taper profile. Additionally, sensing and tunable dispersion properties of the TFBGs were fully examined, considering strain-induced effects. The presented numerical approach, together with Pareto optimization, were also used to design the best tanh apodization profiles of the TFBG in terms of maximizing its spectral width with simultaneous minimization of the group delay oscillations. Experimental verification of the model confirms its correctness. The combination of model versatility and possibility to define the other objective functions of Pareto optimization creates a universal tool for TFBG analysis and design. (C) 2015 Optical Society of America
机译:提出了一种用于光谱传输/反射,群时延特性分析和锥形光纤布拉格光栅(TFBG)设计的通用数值模型。该方法通过定义光栅的折射率变化分布(包括变迹)和锥度轮廓的形状来确保灵活性。此外,考虑到应变引起的影响,对TFBG的感测和可调色散特性进行了全面检查。提出的数值方法与帕累托优化一起,还用于设计TFBG的最佳tanh变迹剖面,这是在最大化其谱宽的同时最小化群延迟振荡。模型的实验验证证实了其正确性。模型的多功能性和定义Pareto优化的其他目标功能的可能性的结合,为TFBG分析和设计创建了通用工具。 (C)2015年美国眼镜学会

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