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Similarity of adjacent-frame chaos waveforms from semiconductor fiber ring laser in sensing applications

机译:从半导体光纤环激光在传感应用中的相邻帧混沌波形的相似性

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Similarity of adjacent-frame chaos waveforms from a semiconductor fiber ring laser (SFRL) is investigated numerically in sensing applications. An improved model of a chaos optical fiber fence system based on a SFRL is presented. The optical fiber's SPM/XPM effects are considered. By this model adjacent-frame similarity's determinants are studied by comparing their cross-correlation function peaks at different parameters. The relationships between the similarity and the optical fiber's distributed linear birefringence effect, as well as SPM/XPM effects induced by the nonlinear birefringence are revealed by setting only one effect to work respectively. The characteristics of the chaos waveform with high similarity are researched by the autocorrelation function and power spectrum. The simulation results show that the similarity is more sensitive to the change of azimuth angle than that of the retardation angle of the polarization controller in the ring laser. It has almost no change with the ring length and injection current of semiconductor optical amplifier (SOA). The optical fiber's distributed linear birefringence and SPM/XPM effects mainly contribute to the formation of polarization chaos light however slightly decrease the similarity. The influence of nonlinear birefringence becomes big and decreases obviously the similarity only at an overlarge SOA current. The chaos waveforms with high similarity have big autocorrelation sub-peaks and the sub-peaks decrease slowly and gradually. Their power spectrums are mixed up with some periodic components. These results are helpful to choose the SFRL's parameters for the accurate disturbance location in a chaos optical fiber fence system.
机译:在感测应用中,在数值上研究了来自半导体光纤环激光(SFRL)的相邻框架混沌波形的相似性。提出了一种基于SFRL的混沌光纤围栏系统的改进模型。考虑光纤的SPM / XPM效果。通过该模型通过比较不同参数的互相关函数峰来研究相邻帧相似度的决定因素。相似性和光纤分布式线性双折射效应的关系,以及由非线性双折射引起的SPM / XPM效应分别揭示了仅一个效果来加工。通过自相关函数和功率谱研究具有高相似性的混沌波形的特性。仿真结果表明,相似性对方位角的变化比环激光器中的偏振控制器的延迟角度更敏感。通过半导体光放大器(SOA)的环长和喷射电流几乎没有变化。光纤的分布式线性双折射和SPM / XPM效果主要有助于形成极化混沌光,然而略微降低相似性。非线性双折射的影响变得大,并且显然在重叠SOA电流下显然降低了相似性。具有高相似性的混沌波形具有大的自相关子峰,并且子峰值缓慢且逐渐降低。它们的功率谱与一些周期性组件混合。这些结果有助于为混沌光纤围栏系统中的准确扰动位置选择SFRL参数。

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