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Polarization-maintaining optical fiber as a sensor of shell vibrations.

机译:保偏光纤作为壳振动的传感器。

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The objective of this work was to investigate the effect of perturbations resulting from both winding a polarization-maintaining (PM) optical fiber on a cylindrical shell in a helical configuration, and radial displacements of the shell on the polarization properties of the light transmitted in the fiber using Mueller matrix polarimetry. A comprehensive, phenomenological theoretical formalism using Mueller matrix calculus was developed to describe the polarization state of light transmitted in a helically wound optical fiber with uniform birefringence and perturbations along the length. This formalism can be used as the basis to model and understand more complex perturbations and polarization effects. A comparison degree of linear polarization obtained from the polarization model in this work and an existing model widely used in the literature, which did not include birefringences due to the fiber configuration, yielded significant differences. The birefringences associated with the fiber configuration must be included in order to develop an accurate polarization model. An optical fiber polarimeter was developed to determine experimentally the Mueller matrix of the fiber in order to study the effect of perturbations on the polarization properties of the transmitted light. Results of experimental measurements of the polarization properties of the PM fiber are discussed. Results of measurements of the polarization properties of the PM fiber wound on a piezoelectric cylindrical shell that is excited to produce both static and dynamic, uniform radial displacements are given. Finally, the effect of radial displacements from low frequency vibrations of a thin, cylindrical steel shell on the polarization properties are also discussed. This work serves as the foundation for understanding the effect of external perturbations on the polarization properties of optical fibers, and establishes the proof-of-principle for developing a polarimetric sensor using polarization-maintaining optical fiber and Mueller matrix polarimetry. Recommendations for future research are also given.
机译:这项工作的目的是研究将偏振保持(PM)光纤以螺旋结构缠绕在圆柱壳上以及壳的径向位移对在光纤中传输的光的偏振特性的扰动影响。光纤使用Mueller矩阵旋光法。开发了一种使用Mueller矩阵演算的综合现象学理论形式主义,以描述在螺旋缠绕的光纤中传输的光的偏振态,该光在长度上具有均匀的双折射和扰动。这种形式主义可以用作建模和理解更复杂的扰动和极化效应的基础。从这项工作中的偏振模型和文献中广泛使用的现有模型(由于光纤配置不包括双折射)得出的线性偏振的比较程度产生了显着差异。为了建立精确的偏振模型,必须包括与光纤配置相关的双折射。为了研究扰动对透射光的偏振特性的影响,开发了一种光纤偏振计,以通过实验确定纤维的穆勒矩阵。讨论了PM光纤偏振特性的实验测量结果。给出了缠绕在压电圆柱壳上的PM光纤极化特性的测量结果,该圆柱壳被激发以产生静态和动态的均匀径向位移。最后,还讨论了圆柱形钢薄壳的低频振动引起的径向位移对偏振特性的影响。这项工作为了解外部扰动对光纤偏振特性的影响奠定了基础,并建立了使用保偏光纤和穆勒矩阵偏振法开发偏振传感器的原理证明。还提供了未来研究的建议。

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