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Low Birefringence Measurement and Temperature Dependence in Meter-Long Optical Fibers

机译:米长光纤的低双折射测量和温度相关性

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摘要

We propose a relatively simple technique to infer the birefringence on single mode low-birefringence optical fibers based on the use of the Faraday effect. The theoretical model for Faraday rotation in the presence of nonnegligible fiber birefringence and a suitable measurement technique offer a fast and efficient way to determine low values of linear birefringence employing short fiber lengths. Alternative known techniques are not sensitive enough or they are of more difficult implementation. The method is used in only ∼1 m-long single-mode optical fibers to obtain the upper-limit birefringence that can be tolerated in order to retain good current sensing sensitivity. The temperature dependence of the Faraday rotation and its causes are also investigated.
机译:基于法拉第效应,我们提出了一种相对简单的技术来推断单模低双折射光纤上的双折射。在存在不可忽略的光纤双折射的情况下,法拉第旋转的理论模型和适当的测量技术为使用短光纤长度确定线性双折射的低值提供了一种快速而有效的方法。替代的已知技术不够灵敏,或者实施起来更加困难。该方法仅用于约1 m长的单模光纤中,以获得可以容忍的上限双折射,以保持良好的电流感应灵敏度。还研究了法拉第旋转的温度依赖性及其原因。

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