首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Optical fiber Bragg gratings. Part II. Modeling of finite-length gratings and grating arrays
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Optical fiber Bragg gratings. Part II. Modeling of finite-length gratings and grating arrays

机译:光纤布拉格光栅。第二部分有限长度光栅和光栅阵列的建模

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摘要

A model of both uniform finite-length optical fiber Bragg gratings and grating arrays is presented. The model is based on the Floquet-Bloch formalism and allows rigorous investigation of all the physical aspects in either single- or multiple-periodic structures realized on the core of a monomodal fiber. Analytical expressions of reflectivity and transmittivity for both single gratings and grating arrays are derived. The influence of the grating length and the index modulation amplitude on the reflected and transmitted optical power for both sinusoidal and rectangular profiles is evaluated. Good agreement between our method and the well-known coupled-mode theory (CMT) approach has been observed for both single gratings and grating arrays only in the case of weak index perturbation. Significant discrepancies exist there in cases of strong index contrast because of the increasing approximation of the CMT approach. The effects of intragrating phase shift are also shown and discussed.
机译:提出了均匀有限长度光纤布拉格光栅和光栅阵列的模型。该模型基于Floquet-Bloch形式主义,并允许对在单峰纤维纤芯上实现的单周期或多周期结构中的所有物理方面进行严格研究。推导了单个光栅和光栅阵列的反射率和透射率的解析表达式。评估了光栅长度和折射率调制幅度对正弦和矩形轮廓反射和透射光功率的影响。仅在弱折射率扰动的情况下,对于单个光栅和光栅阵列,我们的方法与众所周知的耦合模式理论(CMT)方法之间已观察到良好的一致性。由于CMT方法越来越趋近,因此在强烈的索引对比情况下,存在显着差异。还显示和讨论了光栅内相移的影响。

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