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首页> 外文期刊>Sensors and Actuators, A. Physical >Lorentz magneto-resonator model and colossal magnetodielectric effect of magnetoelectric heterostructures
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Lorentz magneto-resonator model and colossal magnetodielectric effect of magnetoelectric heterostructures

机译:磁电异质结构的洛伦兹磁振谐振器模型与巨大磁电效应

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摘要

In the vicinity of their resonance frequency, magnetoelectric heterostructures, which are laminated magnetostrictive material with a piezoelectric resonator, are highly sensitive to external magnetic field. At room temperature colossal magnetodielectric effect near to 30,000% close to the electromechanical resonance frequency was obtained in a magnetic field of about 400 Oe. In this article we present a theoretical model for the magnetoelectric heterostructures based on the Lorentz magneto-resonator model. We show that the colossal magnetodielectric effect is related to the polarization direction of the piezoelectric resonator. When the direction of polarization is parallel to the direction of magnetostriction, the magnetodielectric effect of magnetoelectric heterostructures is much higher than that of the polarization direction perpendicular to the magnetostriction direction. The results of this model are in excellent agreement with experimental data. This modeling environment is found to be extremely useful for understanding how magnetoelectric heterostructures are working in various applications and how to design new magnetic-electric integrated resonant devices. (C) 2018 Elsevier B.V. All rights reserved.
机译:在它们的共振频率附近,磁电异质结构与压电谐振器具有层压磁致伸缩材料,对外部磁场非常敏感。在室温下,在约400°OE的磁场中获得近距离机电谐振频率靠近机电共振频率的30,000%较近的巨大磁电效应。在本文中,我们为基于Lorentz磁振子模型的磁电异质结构的理论模型。我们表明,巨磁电极效应与压电谐振器的偏振方向有关。当偏振方向平行于磁致伸缩方向时,磁电异质结构的磁电效应远高于垂直于磁致伸缩方向的偏振方向的磁电极效应。该模型的结果与实验数据很好。发现这种建模环境对于了解磁电异质结构在各种应用中工作以及如何设计新的磁电集成谐振装置,这是非常有用的。 (c)2018年elestvier b.v.保留所有权利。

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