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A novel miniature magnetic field sensor based on Faraday effect using a heterodyning fiber grating laser

机译:一种新型微型磁场传感器,基于法拉第效应的基于异差光纤光栅激光器

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An orthogonally polarized dual-frequency fiber grating laser is exploited to sense magnetic field in this paper. It shows that the fiber grating laser is sensitive to axial magnetic field through Faraday effect, which results in the beat frequency shift after photodetction of the laser output. The axial magnetic field induces a circular birefringence into the laser cavity, which combines with the intrinsic linear birefringence of the laser cavity to form an elliptical birefringence. The elliptical birefringence is then translated to the beat note frequency through heterodyning between the two orthogonally polarized laser outputs after photodetection. Because the fiber laser is as short as less than 2 cm, a novel miniature magnetic field sensor is then demonstrated.
机译:在本文中利用正交偏振的双频光纤光栅激光器以感测磁场。 它表明光纤光栅激光通过法拉第效应对轴向磁场敏感,这导致激光输出的光电探测之后的节拍频移。 轴向磁场引起圆形双折射到激光腔中,其与激光腔的固有线性双折射相结合以形成椭圆形双折射。 然后通过在光电检测之后的两个正交偏振激光输出之间的外差来将椭圆双折射转换为节拍音量频率。 因为光纤激光器短至小于2cm,则然后对新的微型磁场传感器进行说明。

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