首页> 外文会议>NATO Advanced Research Workshop on Magnetoelectric Interaction Phenomena in Crystals; 20030921-24; Sudak(UA) >MAGNETOELECTRIC EFFECTS IN FERROMAGNETIC METAL-PIEZOELECTRIC OXIDE LAYERED STRUCTURES
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MAGNETOELECTRIC EFFECTS IN FERROMAGNETIC METAL-PIEZOELECTRIC OXIDE LAYERED STRUCTURES

机译:铁磁金属-压电氧化物层状结构中的电磁效应

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摘要

Frequency dependence of magnetoelectric (ME) coupling is investigated in trilayers of ferromagnetic alloy and piezoelectric lead zirconate titanate (PZT). The ferromagnetic phases studied include permendur, a soft magnet with high magnetostriction, iron, nickel, and cobalt. Low frequency data on ME voltage coefficient versus bias magnetic field indicate strong coupling only for trilayers with permendure or Ni. Measurements of frequency dependence of ME voltage reveal a giant ME coupling at electromechanical resonance. The ME interactions for transverse fields is an order of magnitude stronger than for longitudinal fields. The maximum voltage coefficient of 90 V/cm Oe at resonance is measured for samples with nickel or permendure and is three orders of magnitude higher than low-frequency values.
机译:研究了铁磁合金和压电锆钛酸钛酸酯(PZT)的三层中磁电耦合的频率依赖性。研究的铁磁相包括permendur,具有高磁致伸缩性的软磁铁,铁,镍和钴。关于ME电压系数与偏置磁场的低频数据表明,仅对于具有磁导率或Ni的三层具有强耦合。 ME电压频率依赖性的测量结果表明,在机电共振下存在巨大的ME耦合。横向场的ME相互作用比纵向场的ME相互作用强一个数量级。对于含镍或铅的样品,在共振时的最大电压系数为90 V / cm Oe,比低频值高三个数量级。

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