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Piezoelectric control of the magnetic anisotropy via interface strain coupling in a composite multiferroic structure

机译:复合多铁结构中通过界面应变耦合的压电各向异性压电控制

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摘要

We investigate theoretically the magnetic dynamics in a ferroelectric/ferromagnetic heterostructure mediated by a strain-induced magnetoelectric interaction. The epitaxial strain involves a strong piezoelectricity and interfacial magnetoelastic coupling, the interplay of both gives rise to an electrically tunable uniaxial magnetic anisotropy. We predict an electric-field-induced magnetic switching in the plane perpendicular to the magneto-crystalline easy axis while the total magnetization remains stable. We trace this effect back to the ferroelectric control of the magnetic anisotropy. We also inspect the magnetic remanence and the electric coercivity and demonstrate a pronounced dynamic magnetic response to an electric field in a thin ferromagnetic layer.
机译:我们理论上研究由应变诱导的磁电相互作用介导的铁电/铁磁异质结构中的磁性动力学。外延应变涉及强压电性和界面磁弹性耦合,两者的相互作用产生电可调谐的单轴磁各向异性。我们预测在垂直于磁晶易轴的平面中电场感应的磁开关,而总磁化强度保持稳定。我们将此效应追溯到磁各向异性的铁电控制。我们还检查了剩磁和矫顽力,并证明了对薄铁磁层中电场的明显动态磁响应。

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