Multilayer magnetostrictive structure based surface acoustic wave devices

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Abstract

This study addresses the experimental and theoretical investigations of guided elastic waves propagation in piezo-magnetic multi-layered structure. The structure is composed of a 20×TbCo2(5nm)/FeCo(5nm) nanostructured multi-layer deposited between two Aluminum (Al) Inter-Digitals Transducers forming a surface acoustic wave delay line, on a Y-cut LiNbO 3 substrate. We compare the calculated and measured phase velocity variation under the action of the external magnetic field orientation and magnitude. We find quantitative agreement between the measured and modeled phase velocity shift for all external magnetic field configurations (hard axis and easy axis) and for different shape modes of elastic waves at their first and third harmonic operation frequencies. The shear horizontal mode exhibits a maximum phase velocity shift close to 20% for a ratio close to 1 between magneto-elastic film thickness and wavelength. © 2014 AIP Publishing LLC.

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APA

Zhou, H., Talbi, A., Tiercelin, N., & Bou Matar, O. (2014). Multilayer magnetostrictive structure based surface acoustic wave devices. Applied Physics Letters, 104(11). https://doi.org/10.1063/1.4868530

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