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Multiple material domain-based computational tools for ease assessment of modal parameter in photonic crystal fibers

机译:基于多种材料域的计算工具,用于缓解光子晶体纤维中模态参数的评估

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摘要

We report here the development of two computational tools PCFPS (Photonic Crystal Fiber Parameter Study) and PCFPA (Photonic Crystal Fiber Parameter Analysis), equipped with graphical user interface (GUI) for modeling of photonic crystal fiber. The tools are based on different structural parameters, and they provide characteristic analysis of the modal parameters from the structural parameters. The main feature of PCFPS is that it enables the user to find out the values of each defining modal parameter that has an immense contribution towards the manufacture of photonic crystal fiber. Additionally, PCFPA allows the user to observe the variation in the modal parameters with respect to the changes in structural parameters (such as d, ?, d/?, and lambda/?). Besides their ease of use, these two schemes have high computational precision and adaptability, giving a novel platform to optical engineers to modulate the microstructured fibers according to their requirement.
机译:我们在此报告了两个计算工具PCFPS(光子晶体光纤参数研究)和PCFPA(光子晶体光纤参数分析),配备了图形用户界面(GUI),用于光子晶体纤维的建模。该工具基于不同的结构参数,它们提供了来自结构参数的模态参数的特征分析。 PCFP的主要特征是,它使用户能够找出每个定义模态参数的值,所述模态参数对制造光子晶体纤维具有巨大的贡献。此外,PCFPA允许用户在结构参数的变化(例如D,Δ,d /λ和lambda />Δ)上观察模态参数的变化。除了易于使用之外,这两种方案还具有高的计算精度和适应性,使新颖的光学工程师根据其要求调节微结构纤维。

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