Piezoelectric phase effect on magnetic resonance in layered structures: a review
https://doi.org/10.34680/2076-8052.2024.3(137).453-465
Abstract
The article presents a review of the external electric field effect on the magnetic resonance spectrum in layered ferrite-piezoelectric structures. It is shown that in symmetric structures, an electrically induced shift of the magnetic resonance line is observed without line broadening. In antisymmetric structures, an inhomogeneous line broadening takes place, while a line shift is not observed. In the general case, a shift of the resonance line and its broadening are observed. For the different layered structures, the optimum component thickness ratios are determined to obtain the maximal values of the resonance line shift and broadening. The magnetoelectric (ME) effect in the magnetoacoustic resonance region is also considered. In this case, the use of a piezoelectric bimorph layer makes it possible to observe a giant ME effect at overlaying the magnetic resonance frequency and electromechanical resonance higher modes frequencies.
About the Authors
A. F. SaplevRussian Federation
Veliky Novgorod
V. M. Petrov
Russian Federation
Veliky Novgorod
References
1. Nan C.-W., Bichurin M. I., Dong S., Viehland D., Srinivasan G. Multiferroic magnetoelectric composites: Historical perspective, status, and future directions. Journal of Applied Physics. 2008. 103 (3). 031101. DOI: 10.1063/1.2836410.
2. Fiebig M. Revival of the magnetoelectric effect. Journal of Physics D: Applied Physics. 2005. 38 (8). R123-R152. DOI: 10.1088/0022-3727/38/8/R01
3. Bichurin M. I., Petrov V. M. Modeling of Magnetoelectric Effects in Composites. Springer Netherlands, 2014. Springer in Materials Science. Series 201. DOI: 10.1007/978-94-017-9156-4
4. Bichurin M. I., Petrov V. M., Petrov R. V., Tatarenko A. S. Magnetolectric Composites. Pan Stanford Publishing. Pte. Ltd, 2019. DOI: 10.1201/9780429488672
5. Bichurin M. I., Kornev I. A., Petrov V. M., Tatarenko A. S., Kiliba Yu. V., Srinivasan G. Theory of magnetoelectric effects at microwave frequencies in a piezoelectric/magnetostrictive multilayer composite. Physical Review B: Condensed matter and Materials physics. 2001. 64 (9). 944091-944096. DOI: 10.1103/PhysRevB.64.094409
6. Shastry S., Srinivasan G., Bichurin M. I., Petrov V. M., Tatarenko A. S. Microwave magnetoelectric effects in single crystal bilayers of yttrium iron garnet and lead magnesium niobate-lead titanate. Physical Review B: Condensed matter and Materials physics. 2004. 70 (6). 064416. DOI: 10.1103/PhysRevB.70.064416
7. Petrov V. M., Bichurin M. I., Saplev A. F., Tatarenko A. S., Lobekin V. N. Electric field induced broadening of magnetic resonance line in ferrite/piezoelectric bilayer. Journal of Applied Physics. 2017. 121 (22). 224103. DOI: 10.1063/1.4985069
8. Saplev A. F., Petrov V. M. Control of magnetic resonance parameters in the layered structure of ferrite-piezoelectric. Vestnik NovSU. 2022. 3 (128). 108-110. DOI: 10.34680/2076-8052.2022.3(128).108-110
9. Pettiford C., Dasgupta S., Lou J., Yoon S. D., Sun N. X. Bias Field Effects on Microwave Frequency Behavior of PZT/YIG Magnetoelectric Bilayer. IEEE Transactions on Magnetics. 2007. 43 (7). 3343-3345. DOI: 10.1109/TMAG.2007.893790
10. Petrov V. M., Saplev A. F. Magnitoakusticheskij rezonans v sloistoj strukture ferritbimorfnyj p'ezoelement [Magnetoacoustic resonance in a layered structure of a ferrite- dimorphic piezoelectric element] // Mul'tiferroiki: poluchenie, svojstva, primenenie: materialy mezhdunarodnoj nauchno-prakticheskoj konferencii [Multiferroics: preparation, properties, application: materials of the international scientific and practical conference], Vitebsk, September 24-27, 2019 / ed. V. V. Rubanik. Vitebsk: UO «VGTU», 2019. P. 88-90. DOI: 10.26201/ISSP.2019.45.557/MFerro.36
11. Lobekin V. N., Bichurin M. I., Kafarov R. G., Petrov R. V. Investigation of the dependence of the shift of the ferromagnetic resonance line on the parameters of piezoelectric. Vestnik NovSU. 2023. 5 (134). 773-779. DOI: 10.34680/2076-8052.2023.5(134).773-779
12. Petrov V., Saplev A., Srinivasan G. Magneto-acoustic resonance in layered structure of ferrite and piezoelectric bimorph. Ferroelectrics. 2020. 569 (1). 196-200. DOI: 10.1080/00150193.2020.1822676
13. Bichurin M. I., Petrov V. M., Ryabkov O. V., Averkin S.V., Srinivasan G. Physical Review B: Condensed matter and Materials physics. 2005. 72. 060408(R). DOI: 10.1103/PhysRevB.72.060408
Review
For citations:
Saplev A.F., Petrov V.M. Piezoelectric phase effect on magnetic resonance in layered structures: a review. Title in english. 2024;(3(137)):453-465. (In Russ.) https://doi.org/10.34680/2076-8052.2024.3(137).453-465