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Principle and transmission characteristics of long-period photonic crystal fiber grating based on structural change

机译:基于结构变化的长周期光子晶体光纤光栅的原理与传输特性

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A kind of long-period photonic crystal fiber grating based on structural change is studied, whose transmission spectrum is composed of five loss peaks. When a photonic crystal fiber is heated by a CO2 laser, the air-holes in photonic crystal fiber will shrink with the certain period, depth and envelope profile, this will lead to the change of the refractive index in cladding. This paper computes and compares the change of the effective refractive index brought by this kind of structural change in the collapse laws of sine and rectangle envelope, and gets the relationship between the effective refractive index and the shrinkage of air-holes, it is a new progress that the principle of forming grating is proved in the mathematic way. The model of photonic crystal fiber grating based on structural change is built, the effective refractive index varying with the wavelength is discussed. The mode field distribution is computed with finite difference beam propagation method, then transmission spectrum with multi-peak is got. The results of this study indicate that the periodic air-holes shrinkage can form grating, not only the degree of air-holes shrinkage, but also the shrinkage envelope has effect on the magnitude and the distribution of the effective refractive index. There are many modes transmitting in photonic crystal fiber grating based on structural change, however, the coupling can only arise from a few modes.
机译:研究了一种基于结构变化的长周期光子晶光纤光栅,其透射光谱由五个损耗峰组成。当通过CO 2 激光加热光子晶体纤维时,光子晶体纤维中的气孔将与某个时期,深度和包络轮廓缩小,这将导致折射率的变化在包层。本文计算并比较了这种结构变化所带来的正弦和矩形封闭规律的有效折射率的变化,并获得了有效折射率与空洞收缩之间的关系,这是一个新的以数学方式证明了形成光栅原理的进展。构建了基于结构变化的光子晶体光纤光栅模型,讨论了与波长不同的有效折射率。使用有限差波束传播方法计算模式场分布,然后获得了多峰的传输频谱。该研究的结果表明,周期性气孔收缩率可以形成光栅,而不仅可以形成气孔收缩的程度,而且收缩包络对有效折射率的幅度和分布产生影响。基于结构变化,在光子晶体光纤光栅中传输许多模式,然而,耦合只能从几种模式产生。

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