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Phase-sensitive dc magnetometer based on magnetic–electromagnetic–magnetostrictive–piezoelectric heterostructure

机译:基于磁-电磁-磁致伸缩-压电异质结构的相敏直流磁力计

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A phase-sensitive dc magnetometer is developed by combining a pair of permanent magnets, an electromagnetic coil, and a magnetostrictive–piezoelectric laminate in one direction to form a four-phase magnetic–electromagnetic–magnetostrictive–piezoelectric heterostructure. The dc magnetic field sensing in the magnetometer is based on the detection of the phase difference between the off-resonance magnetoelectric voltage manipulated by the dc magnetic field to be measured and the resonance electric current referenced at zero dc magnetic field, both under a preset bias magnetic field. The theoretical and experimental results confirm a high and linear dc magnetic field sensitivity of –0.21 °/Oe over a positive and negative dc magnetic field range of ±150 Oe with a small nonlinearity of 1.7%. The magnetometer has the ability to determine dc magnetic field direction and its sensitivity is independent of zero-field resonance electric current amplitude.
机译:通过将一对永磁体,一个电磁线圈和一个磁致伸缩-压电叠片在一个方向上组合在一起,形成一个四相的磁-电磁-磁致伸缩-压电异质结构,从而开发出了一种相敏型直流磁力计。磁力计中的dc磁场感测基于在预定偏置下检测由待测dc磁场操纵的失谐磁电压与以零dc磁场为参考的谐振电流之间的相位差。磁场。理论和实验结果证实,在±150 Oe的正负直流磁场范围内,线性直流磁场灵敏度为–0.21°/ Oe,非线性很小,为1.7%。磁力计具有确定直流磁场方向的能力,其灵敏度与零场共振电流幅度无关。

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