Magnon-tuning non-volatile magnetic dynamics in a CoZr/PMN-PT structure

Author:

Zhou Cai,Zhang Ming-fang,Liu Fu-fu,Jin Ying,Jiang Chang-jun,Hu Min,Feng Cun-fang,Wang Feng-long,Xu Ming-yao,Wang Sheng-xiang

Abstract

AbstractMagnon-tuning non-volatile magnetic dynamics is investigated in a CoZr/PMN-PT structure by measuring ferromagnetic resonance at room temperature. The electric-field control of ferromagnetic resonance shows loop-like behavior, which indicates non-volatile electric-field control of the magnetism. Further, fitting the curves of in-plane rotating angle versus ferromagnetic resonance field under different electric fields shows that the effective magnetic field changes in loop-like manner with the electric field. The resulting change in non-volatile saturation magnetization with electric field is consistent with that of a polarization electric field curve. A 1.04% change of saturation magnetization is obtained, which can be attributed to a magnon-driven magnetoelectric coupling at the CoZr/PMN-PT interface. This magnon-driven magnetoelectric coupling and its dynamic magnetic properties are significant for developing future magnetoelectric devices.

Funder

the National Natural Science Foundation of China

the Foundation of Wuhan Textile University

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

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