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Enhanced self-bias magnetoelectric effect in locally heat-treated ME laminated composite

机译:局部热处理的ME层状复合材料中增强的自偏置磁电效应

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This study reports the improvement in the magnetoelectric (ME) coupling effect in a locally heat-treated FeBSi (Metglas)/Pb(Mg1/3Nb2/3)O-3-PbZrO3-PbTiO3 single crystal laminated composite under zero magnetic bias. The high-temperature pulse laser treatment could induce local crystallization along the laser scanning line, but adjacent domains remained still amorphous, which resulted in the thermal and lattice mismatch. Therefore, it could produce a residual stress between the crystalline and amorphous phases, which generated an internal bias field in the Metglas foil. The experimental results showed that the ME coefficient for the laser-treated laminate was enhanced to 1220 V/cm Oe at the resonance frequency of 23.32 kHz without a magnetic bias, which was two times higher than that of the untreated ME laminates. The induced ME voltage also showed a linear response to the applied AC magnetic field with an amplitude as low as 10(-10) T at the resonance. The excellent ME performance could, therefore, serve as a promising and practicable application for highly sensitive magnetic field sensors under the zero bias field.
机译:这项研究报告了零磁偏压下局部热处理的FeBSi(Metglas)/ Pb(Mg1 / 3Nb2 / 3)O-3-PbZrO3-PbTiO3单晶层压复合材料的磁电(ME)耦合效应的改善。高温脉冲激光处理可引起沿激光扫描线的局部结晶,但相邻的畴仍保持非晶态,从而导致热和晶格失配。因此,它可能在结晶相和非晶相之间产生残余应力,从而在Metglas箔中产生内部偏置场。实验结果表明,在没有磁偏置的23.32 kHz共振频率下,经激光处理的层压板的ME系数提高到1220 V / cm Oe,这是未经处理的ME层压板的两倍。感应的ME电压还显示出对所施加的AC磁场的线性响应,谐振时的振幅低至10(-10)T。因此,优异的ME性能可作为零偏置磁场下高灵敏度磁场传感器的有希望且实用的应用。

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