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Magneto-optical properties and temperature dependence of diamagnetic lead borate glasses for fiber-optical current transducer

机译:光纤电流传感器用抗磁性硼酸铅玻璃的磁光性能和温度依赖性

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In this paper, diamagnetic lead borate magneto-optical glasses with an improved Verdet constant, high glassforming ability and good thermal stability were synthesized to meet the design requirements of fiber-optical current transducers (FOCTs). The structure and performance indexes of the glasses were characterized by Raman spectroscopy, Fourier transform infrared (FT-IR) spectroscopy and X-ray diffraction (XRD). The Verdet constant of the glass samples can reach 0.1757 min/(G cm) at 633 nm, indicating excellent magnetic rotation properties. In practical applications, FOCTs are often used in complex industrial environments that require high temperature stability. To test the temperature dependence of the diamagnetic lead borate glasses, we constructed a dual-lightpath variable-temperature magneto-optical modulation system. The experimental data show that the Verdet constant decreases slowly with increasing ambient temperature; thus, we theoretically analyzed the magneto-optical properties of the diamagnetic glass and the cause of its temperature dependence according to the discrepancy between the experimental results and the Becquerel formulas. We also obtained an empirical formula by fitting the Verdet-temperature curve, thereby providing an evaluation basis and a screening method for further development of FOCT materials.
机译:本文合成了具有改善的维尔德常数,高玻璃形成能力和良好的热稳定性的抗磁性硼酸铅磁光玻璃以满足光纤电流传感器的设计要求。通过拉曼光谱,傅立叶变换红外(FT-IR)光谱和X射线衍射(XRD)表征了玻璃的结构和性能指标。玻璃样品的Verdet常数在633 nm处可达到0.1757 min /(G cm),表明其出色的磁旋转性能。在实际应用中,FOCT通常用于需要高温稳定性的复杂工业环境中。为了测试抗磁性硼酸铅玻璃的温度依赖性,我们构建了双光路可变温度磁光调制系统。实验数据表明,Verdet常数随着环境温度的升高而缓慢降低;因此,我们根据实验结果与Becquerel公式之间的差异,从理论上分析了抗磁性玻璃的磁光特性及其温度依赖性的原因。我们还通过拟合Verdet温度曲线获得了经验公式,从而为进一步开发FOCT材料提供了评估依据和筛选方法。

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