Rocha Ana M, Machado Ana I, Almeida Telmo, Vieira Joana, Facão Margarida
Instituto de Telecomunicações and University of Aveiro, Campus Universitário de Santiago, 3810-193 Aveiro, Portugal.
Department of Physics and I3N, University of Aveiro, Campus Universitário de Santiago, 3810-193 Aveiro, Portugal.
Sensors (Basel). 2020 Nov 10;20(22):6409. doi: 10.3390/s20226409.
Long period gratings (LPGs) inscribed in single mode fibers (SMFs) using CO laser irradiation were modelled numerically using the coupled mode method. The model considers the specifications of the inscription technique, such as the shape of the refractive index modulation that mimics the circularly symmetric point-to-point laser irradiation profile. A simple expression for predicting the resonant wavelength was obtained assuming a two-mode coupling model. However, to explain the spectra of the experimental LPGs, it was necessary to assume a reasonably high refractive index change and a multimode coupling model. Furthermore, using the developed model and a genetic algorithm to fit experimental resonances to simulated ones, we were able to estimate the maximum refractive index change, obtaining a value of 2.2 × 10, confirming the high refractive index change. The proposed model also predicts a second order resonance for this high value of refractive index change that was confirmed experimentally. Hence, with this model, we found some significant differences in the LPGs behavior when compared with conventional ones, namely, the emergence of coupling between different cladding modes and the competition of first and second order resonances which change the LPG transmission spectrum.
利用CO激光辐照在单模光纤(SMF)中写入的长周期光栅(LPG),采用耦合模方法进行了数值模拟。该模型考虑了写入技术的规格,例如模拟圆对称点对点激光辐照轮廓的折射率调制形状。在假设双模耦合模型的情况下,得到了一个预测谐振波长的简单表达式。然而,为了解释实验LPG的光谱,有必要假设一个相当高的折射率变化和一个多模耦合模型。此外,使用开发的模型和遗传算法将实验谐振与模拟谐振进行拟合,我们能够估计最大折射率变化,得到的值为2.2×10,证实了高折射率变化。所提出的模型还预测了这种高折射率变化值下的二阶谐振,这在实验中得到了证实。因此,通过该模型,我们发现与传统LPG相比,LPG的行为存在一些显著差异,即不同包层模式之间耦合的出现以及一阶和二阶谐振的竞争,这会改变LPG的传输光谱。