磁强计
光纤激光器
激光器
材料科学
分辨率(逻辑)
纤维
光学
物理
计算机科学
磁场
量子力学
人工智能
复合材料
作者
Geoffrey A. Cranch,Gordon M. H. Flockhart,Clay K. Kirkendall
标识
DOI:10.1088/0957-0233/20/3/034023
摘要
A low-frequency magnetic field sensor, based on a current-carrying beam driven by the Lorentzian force, is described. The amplitude of the oscillation is measured by a distributed-feedback fiber laser strain sensor attached to the beam. The transduction mechanism of the sensor is derived analytically using conventional beam theory, which is shown to accurately predict the responsivity of a prototype sensor. Excellent linearity and negligible hysteresis are demonstrated. Noise sources in the fiber laser strain sensor are described and thermo-mechanical noise in the transducer is estimated. The prototype sensor achieves a magnetic field resolution of 5 nT Hz for 25 mA of current, which is shown to be close to the predicted thermo-mechanical noise limit of the sensor. The current is supplied optically through a separate optical fiber yielding an electrically passive sensor head.
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