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Flux/voltage calibration of axial SQUID gradiometers using anoptimization procedure

机译:使用优化程序校准轴向SQUID梯度计的通量/电压

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摘要

A straightforward experimental procedure for calibration of axial SQUID gradiometers has been developed, based on numerical optimization techniques. A dc current carrying wire of finite length, whose magnetic field spatial distribution is well known, was scanned by a SQUID system at several lift-off distances. Initially, theoretical magnetic field parameters such as lift-off and scanning tilt angles were numerically optimized in order to match the normalized shapes of experimental and theoretical signals. After that, the calibration factor can be easily found as the ratio between the two non-normalized signals. Once the calibration factor was obtained, an experimental validation was made by using a current-carrying copper sheet and by comparing the calibrated experimental signal with a model prediction, leading to good results. The overall procedure is easily implemented and can be modified to account for different SQUID systems and gradiometer geometry
机译:基于数值优化技术,已经开发了用于校准轴向SQUID梯度仪的简单实验程序。由SQUID系统在几个提升距离上扫描了磁场长度分布众所周知的有限长度的直流载流导线。最初,理论上对磁场参数(例如离地角和扫描倾斜角)进行了数值优化,以匹配实验信号和理论信号的标准化形状。之后,可以很容易地找到两个非归一化信号之间的比率作为校准因子。一旦获得校准因子,就可以通过使用载流铜板并将校准的实验信号与模型预测值进行比较来进行实验验证,从而获得良好的结果。整个程序易于实施,可以修改以适应不同的SQUID系统和梯度仪几何形状

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