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Prediction of Secondary Dispersion for the Design of Dispersion-Tailored Microstructured Fibers

机译:含色散的微结构纤维设计中的次级色散预测

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摘要

In this paper, a scalable dispersion management approach for microstructured fibers (MSFs) is proposed and applied to the design of zero-dispersion fibers and ultrawideband dispersion-flattened fibers. The proposed method can predict the dispersion of MSFs accurately by taking secondary dispersion into account, this being the interactive contribution from both the material and the geometrical effects. The secondary dispersion is modeled as a function of the propagation index difference and wavelength, and the model can be exploited to predict the secondary dispersion of scaled structures. This method of predicting dispersion is then combined with the scalable property of the geometrical dispersion to form a scalable dispersion-tailoring approach. This new design approach is applied to the design of zero-dispersion MSFs working at 1.55 $mu$m and 1.3 $mu$m, respectively. It is then shown that the method can be used for the design of ultrawideband zero-dispersion fibers. A MSF with predicted dispersion as low as 0.2 ps/(km$cdot$nm) over the range 1.3–1.6 $mu$ m is described.
机译:本文提出了一种可扩展的微结构光纤色散管理方法,并将其应用于零色散光纤和超宽带色散扁平光纤的设计。所提出的方法可以通过考虑二次色散来准确预测MSF的色散,这是材料和几何效应的相互作用。将次级色散建模为传播指数差异和波长的函数,并且可以利用该模型来预测缩放结构的次级色散。然后,将这种预测色散的方法与几何色散的可缩放属性结合起来,以形成可缩放的色散定制方法。这种新的设计方法适用于零色散MSF的设计,分别工作于1.55μm和1.3μm。然后表明该方法可用于设计超宽带零色散光纤。描述了在1.3-1.6μm范围内预测色散低至0.2 ps /(km cdot $ nm)的MSF。

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