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A Quantitative Analysis of the Performance of an All-Fiber Electronically Tunable Wavelength Filter Using a Four-Layer Model

机译:使用四层模型的全光纤电子可调波长滤波器性能的定量分析

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In this work, an investigation of the tuning characteristics of electrically tunable long-period gratings (LPGs) is presented. A precise four-layer model is used to quantitatively analyze the tuning potential of the gratings and experimental data is provided to support the analysis. The four-layer model includes a silica core layer with an inscribed LPG, a thin silica cladding layer (~ 40 μm), an ultra-thin (~ 50 nm) high refractive index indium-tin dioxide (ITO) inner electrode layer, and a tunable electro-optic polymer layer. It has been found that the inner electrode layer, made of high refractive index ITO, can be modeled as a high index overlay and causes the forward propagating modes in the thin silica cladding to reorganize as the ambient refractive index changes. This reorganization effect can lead to a significant increase (10 plus fold) in the tuning range of LPG tunable filters. Moreover, the required specifications of the tunable polymer layer are quantitatively analyzed. Finally, the required characteristics of the electro-optic polymer are realized by using a nano-composite of zinc sulfide and ferroelectric relaxor poly(vinylidene fluoride - trifluoroethylene -chlorofluoroethylene) terpolymer.
机译:在这项工作中,提出了对电可调长周期光栅(LPG)的调谐特性的研究。精确的四层模型用于定量分析光栅的调谐电位,并提供实验数据来支持分析。四层模型包括一个带有内接LPG的二氧化硅芯层,一个薄的二氧化硅包层(〜40μm),一个超薄(〜50 nm)高折射率的铟-二氧化锡(ITO)内电极层以及可调谐光电聚合物层。已经发现,由高折射率ITO制成的内部电极层可以被建模为高折射率覆盖层,并且随着环境折射率的变化,使薄二氧化硅覆层中的正向传播模式重新组织。这种重组效果可能导致LPG可调滤波器的调谐范围显着增加(超过10倍)。此外,定量分析了可调聚合物层的所需规格。最后,通过使用硫化锌和铁电弛豫剂聚偏二氟乙烯-三氟乙烯-氯氟乙烯三元共聚物的纳米复合材料,可以实现电光聚合物所需的特性。

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