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A comparison of a new modal transfer matrix method with coupled mode theory for simulation of long-period gratig fiber sensors

机译:一种新型模态传递矩阵方法对长周期GRATIG光纤传感器耦合模式理论的比较

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摘要

The modal transfer matrix method (MTMM) is a new general-purpose technique developed by the authors as an alternative to coupled mode theory (CMT) to study complex optical waveguide systems. It is applied here to overcome the numerical accuracy limitation of the beam propagation method (BPM) when simualting long-period gratings (LPG). Simulation of a LPG optical fiber sensor with a broad-wavelength source using the MTMM is compared with analytical results based on CMT. A simple grating parameter study shows that both methods are in agreement, indicating that the MTMM is a promising method of analysis. In addition, the results reveal the potential effect of combined variation in grating amplitude, spatial wavelength, and length on sensor performance. By discretizing the waveguide into small elements, the MTMM reduces the problem domain size and makes use of proven electromagnetic numerical simulation methods. An appropriate numerical method, in this case the BPM, is selected to compute each element's modal transfer matrix. The elements are then combined to predict the output from the overall waveguide system.
机译:模态传递矩阵方法(MTMM)是由作者开发的新型通用技术,作为耦合模式理论(CMT)的替代,以研究复杂的光波导系统。这里应用了它来克服模拟长周期光栅(LPG)时光束传播方法(BPM)的数值精度限制。将使用MTMM的宽波长源的LPG光纤传感器的模拟与基于CMT的分析结果进行比较。简单的光栅参数研究表明,两种方法都在一致,表明MTMM是一种有希望的分析方法。此外,结果揭示了光栅幅度,空间波长和传感器性能上长度的组合变化的潜在效果。通过将波导分成小的元件,MTMM降低了问题域尺寸并利用经过验证的电磁数值模拟方法。选择适当的数值方法,在这种情况下,选择BPM以计算每个元素的模态传输矩阵。然后将元件组合以预测总波导系统的输出。

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