Low-Frequency Resonant Magnetoelectric Effects in Layered Heterostructures Antiferromagnet-Piezoelectric

被引:4
|
作者
Burdin, Dmitri A. [1 ]
Chashin, Dmitri V. [1 ]
Ekonomov, Nikolai A. [1 ]
Fetisov, Leonid Y. [1 ]
Preobrazhensky, Vladimir L. [2 ]
Fetisov, Yuri K. [1 ]
机构
[1] MIREA Russian Technol Univ, Moscow 119454, Russia
[2] Prokhorov Gen Phys Inst RAS, Moscow 119991, Russia
基金
俄罗斯科学基金会;
关键词
magnetoelectric effect; heterostructure; antiferromagnet; hematite; magnetostriction; piezoelectric; magnetic field sensor;
D O I
10.3390/s23135901
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Magnetic field sensors using magnetoelectric (ME) effects in planar ferromagnetic-piezoelectric heterostructures convert a magnetic field into an output voltage. The parameters of ME sensors are determined by characteristics of the magnetic constituent. In this work, the low-frequency ME effects in heterostructures comprising a layer of antiferromagnetic hematite & alpha;-Fe2O3 crystal with easy-plane anisotropy and a piezoelectric layer are studied. The effects arise due to a combination of magnetostriction and piezoelectricity because of mechanical coupling of the layers. The field dependences of magnetization and magnetostriction of the hematite crystal are measured. The resonant ME effects in the hematite-piezopolymer and hematite-piezoceramic structures are studied. The strong coupling between magnetic and acoustic subsystems of hematite results in a tuning of the acoustic resonance frequency by the magnetic field. For the hematite layer, the frequency tuning was found to be similar to 37% with an increase in the bias field up to 600 Oe. For the hematite-PVDF heterostructure, the frequency tuning reached similar to 24% and the ME coefficient was 58 mV/(Oe & BULL;cm). For the hematite-piezoceramic heterostructure, the frequency tuning was similar to 4.4% and the ME coefficient 4.8 V/(Oe & BULL;cm). Efficient generation of the second voltage harmonic in the hematite-piezoceramic heterostructure was observed.
引用
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页数:13
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