Abstract
We investigated electric control of magnetic properties in FeRh/PMN-PT heterostructures. An electric field of 1 kV/cm applied on the PMN-PT substrate could increase the coercivity of FeRh film from 60 to 161 Oe at 360 K where the FeRh antiferromagnetic to ferromagnetic phase transition occurs. The electric field dependent coercive field reveals a butterfly shape, indicating a strain-mediated magnetoelectric coupling across the FeRh/PMN-PT interface. However, the uniaxial magnetic anisotropy of FeRh is almost unchanged with the applied electric field on the PMN-PT substrate, which suggests the change of coercivity in FeRh films is mainly due to the shift of the magnetic transition temperature under the electric field.
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CITATION STYLE
Xie, Y., Zhan, Q., Shang, T., Yang, H., Liu, Y., Wang, B., & Li, R. W. (2018). Electric field control of magnetic properties in FeRh/PMN-PT heterostructures. AIP Advances, 8(5). https://doi.org/10.1063/1.5003435
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