法拉第笼
光纤
法拉第效应
双折射
光纤传感器
线性
材料科学
光学
保偏光纤
极化(电化学)
补偿(心理学)
电子工程
磁场
光电子学
工程类
物理
心理学
化学
物理化学
量子力学
精神分析
作者
P. Drexler,Pavel Fiala
摘要
Fiber optic sensors dispose of some advantages in the field of electrical current and magnetic field meas- urement, like large bandwidth, linearity, light transmission possibilities. Unfortunately, they suffer from some parasitic phenomena. The crucial issue is the presence of induced and latent linear birefringence, which is imposed by the fiber manufacture imperfections as well as mechanical stress by fiber bending. In order to the linear birefringence compensation a promising method was chosen for pulsed current sensor design. The method employs orthogonal polarization conjugation by the back direction propagation of the light wave in the fiber. The Jones calculus analysis presents its propriety. An experimental fiber optic current sensor has been designed and realized. The advantage of the proposed method was proved considering to the sensi- tivity improvement.
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