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Acousto-opto-mechanical theory for polarization maintaining optical fibers in Brillouin based sensing

机译:基于布里渊的传感中保偏光纤的声光力学理论

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摘要

Change in phase or wavelength for interferometric and fiber Bragg Gratings (FBG) based sensors can be described by strain-optic effects. In Brillouin sensors, strain sensitivity need to be expressed in terms of acousto-opto-mechanical properties of fibers. It is then possible to formulate theoretical relationships that lead to the evaluation of strain sensitivities and establishment of gauge factors for Brillouin based sensors. This article reports on the derivation of generalized relationships describing the strain sensitivity in terms of acousto-optic effects in optical fibers. In particular, the formulations correspond to polarization maintaining fibers at various polarization angles with respect to the slow axis of the fiber. The scope of research encompassed theoretical and experimental studies involving both single mode as well as polarization maintaining optical fibers subjected to strain under isothermal conditions. A high resolution BOTDA was employed in the experiments in order to verify the validity of theoretical relationships between strain and Brillouin frequency shifts for different polarization angles.
机译:基于干涉和光纤布拉格光栅(FBG)的传感器的相位或波长变化可以通过应变光学效应来描述。在布里渊传感器中,应变灵敏度需要以纤维的声光机械性能来表示。然后就可以建立理论关系,从而导致基于布里渊的传感器的应变敏感性评估和建立规格因子。本文报道了广义关系的推导,该关系描述了光纤中声光效应对应变敏感性的影响。特别地,所述制剂对应于相对于纤维的慢轴以各种偏振角保持偏振的纤维。研究范围包括理论和实验研究,涉及在等温条件下承受应变的单模光纤和保偏光纤。为了验证应变和布里渊频移在不同偏振角之间的理论关系的有效性,在实验中采用了高分辨率的BOTDA。

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