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High sensitivity optical fiber current sensor based on polarization diversity and a Faraday rotation mirror cavity

机译:基于偏振分集和法拉第旋转镜腔的高灵敏度光纤电流传感器

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摘要

A novel high sensitivity optical fiber current sensor (OFCS) based on polarization diversity and a Faraday rotation mirror cavity is proposed and demonstrated. Comparing with single-channel detection in a conventional OFCS, a signal power gain of 6 dB and a signal-to-noise ratio improvement of over 30 dB have been achieved in the new scheme. The cavity amplifies magnetic field-induced nonreciprocal phase modulation, while the Faraday rotation mirrors suppress the reciprocal birefringence. A linear response is obtained for current amplitude as low as several mA at an AC frequency of 1 kHz.
机译:提出并论证了一种基于偏振分集和法拉第旋转镜腔的新型高灵敏度光纤电流传感器。与传统OFCS中的单通道检测相比,新方案已实现6 dB的信号功率增益和30 dB以上的信噪比改善。腔放大了磁场引起的不可逆相位调制,而法拉第旋转镜则抑制了可逆双折射。在1 kHz的交流频率下,电流幅度低至几mA时,可获得线性响应。

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