Zhang Jue, Zhao Xincai, Chen Guanghua, Peng Qixian
Institute of Fluid Physics, China Academy of Engineering Physics, Mianyang, Sichuan 621900, China.
Rev Sci Instrum. 2021 Oct 1;92(10):105004. doi: 10.1063/5.0058980.
The immunity and survivability in a strong electromagnetic environment make the Faraday Rotation (FR) method irreplaceable for measuring pulsed magnetic fields. We present a dual-channel FR method that achieves more stable and precise measurement and more applicable magnetic field types than the conventional FR method. By splitting the modulated light into two components, the ratio of the two components is transformed into a tangent function with two analyzers at a relative 45°. The use of terbium gallium garnet, which has a significant magneto-optical effect, as a magneto-optical medium enables higher sensitivity for measurement. We have successfully measured the variation in magnetic flux density of the capacitively driven pulsed magnetic field.
在强电磁环境中的抗干扰能力和可生存性使得法拉第旋转(FR)方法在测量脉冲磁场方面具有不可替代的地位。我们提出了一种双通道FR方法,该方法比传统的FR方法能实现更稳定、精确的测量以及更适用的磁场类型。通过将调制光分成两个分量,利用两个成45°相对角度的检偏器将这两个分量的比值转换为正切函数。使用具有显著磁光效应的铽镓石榴石作为磁光介质可实现更高的测量灵敏度。我们已成功测量了电容驱动脉冲磁场的磁通密度变化。