Frosio G, Dändliker R
Appl Opt. 1994 Sep 1;33(25):6111-22. doi: 10.1364/AO.33.006111.
A reciprocal fiber-optic reflection interferometer for remote measurement of electrical current through the Faraday effect is described. The effects of polarization cross coupling because of nonideal elements are eliminated with a low-coherence source. Nonreciprocal birefringence phase modulation is employed for detection of the Faraday phase shift. The theoretical predictions are confirmed by measurements with a piece of straight fiber as the sensing element in a 100-turn solenoid. Currents from 0 to 40 A have been measured with a linear response and a noise limit of ~0.015 A/√Hz.
描述了一种用于通过法拉第效应远程测量电流的互易光纤反射干涉仪。使用低相干光源消除了由于非理想元件导致的偏振交叉耦合效应。采用非互易双折射相位调制来检测法拉第相移。通过在100匝螺线管中使用一段直光纤作为传感元件进行测量,证实了理论预测。已测量了0至40A的电流,具有线性响应,噪声极限约为0.015A/√Hz。