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Compensation of Verdet Constant Temperature Dependence by Crystal Core Temperature Measurement

机译:晶心温度测量补偿维尔德恒温相关性

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摘要

Compensation of the temperature dependence of the Verdet constant in a polarimetric extrinsic Faraday sensor is of major importance for applying the magneto-optical effect to AC current measurements and magnetic field sensing. This paper presents a method for compensating the temperature effect on the Faraday rotation in a Bi12GeO20 crystal by sensing its optical activity effect on the polarization of a light beam. The method measures the temperature of the same volume of crystal that effects the beam polarization in a magnetic field or current sensing process. This eliminates the effect of temperature difference found in other indirect temperature compensation methods, thus allowing more accurate temperature compensation for the temperature dependence of the Verdet constant. The method does not require additional changes to an existing Δ/Σ configuration and is thus applicable for improving the performance of existing sensing devices.
机译:极化外部法拉第传感器中Verdet常数的温度依赖性补偿对于将磁光效应应用于AC电流测量和磁场感测至关重要。本文提出了一种通过感测Bi12GeO20晶体中法拉第旋转的温度效应来补偿其对光束偏振的光学效应的方法。该方法测量在磁场或电流感测过程中影响光束极化的相同体积晶体的温度。这消除了在其他间接温度补偿方法中发现的温度差异的影响,从而允许对Verdet常数的温度依赖性进行更精确的温度补偿。该方法不需要对现有的Δ/Σ配置进行额外的改变,因此适用于改善现有感测装置的性能。

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