Zighem Fatih, Belmeguenai Mohamed, Faurie Damien, Haddadi Halim, Moulin Johan
Laboratoire des Sciences des Procédés et des Matériaux, CNRS-Université Paris XIII, Sorbonne Paris Cité, Villetaneuse, France.
Laboratoire MSMP - Carnot Arts, ENSAM ParisTech, rue Saint-Dominique, 51006 Châlons-en-Champagne, France.
Rev Sci Instrum. 2014 Oct;85(10):103905. doi: 10.1063/1.4897237.
This paper reports the development of a methodology combining microstrip ferromagnetic resonance and digital image correlation in order to simultaneously measure the voltage-induced strains and the magnetic resonance in artificial magnetoelectric heterostructures ("magnetic films/piezoelectric substrate" or "magnetic films/flexible substrate/piezoelectric actuator"). The overall principle of the technique and the related analytical modelling are described. It is powerful to estimate the magnetostriction coefficient of ferromagnetic thin films and can be used to determine the effective magnetoelectric coefficient of the whole heterostructures in addition to the piezoelectric coefficient related to the in-plane voltage-induced strains. This methodology can be applied to system for which the strains are well transmitted at the different interfaces.
本文报道了一种结合微带铁磁共振和数字图像相关技术的方法的开发,以便同时测量人工磁电异质结构(“磁性薄膜/压电基板”或“磁性薄膜/柔性基板/压电致动器”)中的电压诱导应变和磁共振。描述了该技术的总体原理及相关的分析模型。该方法在估算铁磁薄膜的磁致伸缩系数方面很有效,除了与面内电压诱导应变相关的压电系数外,还可用于确定整个异质结构的有效磁电系数。这种方法可应用于应变能在不同界面良好传递的系统。