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首页> 外文期刊>Journal of magnetism and magnetic materials >Performance of magneto-optical glass in optical current transducer application
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Performance of magneto-optical glass in optical current transducer application

机译:磁光玻璃在光学电流传感器中的性能

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First, a theoretical analysis was performed on the effect of temperature on the performance of the sensing element of paramagnetic rare earth-doped magneto-optical glass material that can be used in an optical current transducer application. The effect comprises two aspects: the linear birefringence and the Verdet constant On this basis, rare earth-doped glass temperature characteristics were studied, and the experimental results indicated that the linear birefringence of rare earth-doped glass increased with increasing temperature, while its magneto-optical sensitivity decreased. Comparative experiments performed for various concentrations of rare earth dopant in the glass revealed that changes in the dopant concentration had no significant effect on the performance of magneto-optical glass. At last, a comparison between rare earth-doped magneto-optical and diamagnetic dense flint glass showed that the sensitivity of the former was six times that of the latter, although the temperature stability of the former was poorer.
机译:首先,对温度对可用于光电流传感器应用中的顺磁性稀土掺杂磁光玻璃材料的传感元件性能的影响进行了理论分析。该效应包括两个方面:线性双折射和维尔德常数。在此基础上,研究了稀土掺杂玻璃的温度特性,实验结果表明,稀土掺杂玻璃的线性双折射随着温度的升高而增加,而其磁化强度则随温度的升高而增加。 -光学灵敏度降低。对玻璃中各种浓度的稀土掺杂剂进行的比较实验表明,掺杂剂浓度的变化对磁光玻璃的性能没有显着影响。最后,将稀土掺杂的磁光玻璃和抗磁性的打火石玻璃进行了比较,结果表明前者的灵敏度是后者的六倍,尽管前者的温度稳定性较差。

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