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Sensitivity Enhancement in Magnetic Sensors Based on Ferroelectric-Bimorphs and Multiferroic Composites

机译:基于铁电双压电晶片和多铁复合材料的磁传感器的灵敏度增强

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Multiferroic composites with ferromagnetic and ferroelectric phases have been studied in recent years for use as sensors of AC and DC magnetic fields. Their operation is based on magneto-electric (ME) coupling between the electric and magnetic subsystems and is mediated by mechanical strain. Such sensors for AC magnetic fields require a bias magnetic field to achieve pT-sensitivity. Novel magnetic sensors with a permanent magnet proof mass, either on a ferroelectric bimorph or a ferromagnetic-ferroelectric composite, are discussed. In both types, the interaction between the applied AC magnetic field and remnant magnetization of the magnet results in a mechanical strain and a voltage response in the ferroelectric. Our studies have been performed on sensors with a Nd-Fe-B permanent magnet proof mass on (i) a bimorph of oppositely-poled lead zirconate titanate (PZT) platelets and (ii) a layered multiferroic composite of PZT-Metglas-Ni. The sensors have been characterized in terms of sensitivity and equivalent magnetic noise N. Noise N in both type of sensors is on the order of 200 pT/√Hz at 1 Hz, a factor of 10 improvement compared to multiferroic sensors without a proof mass. When the AC magnetic field is applied at the bending resonance for the bimorph, the measured N ≈ 700 pT/√Hz. We discuss models based on magneto-electro-mechanical coupling at low frequency and bending resonance in the sensors and theoretical estimates of ME voltage coefficients are in very good agreement with the data.
机译:近年来,已经研究了具有铁磁和铁电相的多铁复合材料,用作交流和直流磁场的传感器。它们的操作基于电子系统和磁子系统之间的磁电耦合(ME),并且受机械应变的影响。这种用于交流磁场的传感器需要偏置磁场以实现pT灵敏度。讨论了在铁电双压电晶片或铁磁-铁电复合材料上具有永久磁铁质量的新型磁传感器。在这两种类型中,施加的交流磁场和磁体的剩余磁化强度之间的相互作用都会导致铁电体中的机械应变和电压响应。我们的研究是在(i)反向极化锆钛酸铅(PZT)血小板的双晶型和(ii)PZT-Metglas-Ni的多层多铁复合材料上具有Nd-Fe-B永磁体质量的传感器上进行的。传感器已根据灵敏度和等效磁噪声N进行了表征。两种类型的传感器在1 Hz时的噪声N均为200 pT /√Hz,与没有质量证明的多铁性传感器相比提高了10倍。在双压电晶片的弯曲共振处施加交流磁场时,测得的N≈700 pT /√Hz。我们讨论了基于低频电磁机电耦合和传感器中弯曲共振的模型,ME电压系数的理论估计与数据非常吻合。

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