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Giant reversible anisotropy changes at room temperature in a (LaSr)MnO3/Pb(MgNbTi)O3 magneto-electric heterostructure

机译:(LaSr)MnO3 / Pb(MgNbTi)O3磁电异质结构在室温下的巨大可逆各向异性变化

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摘要

In a model artificial multiferroic system consisting of a (011)-oriented ferroelectric Pb(Mg,Nb,Ti)O3 substrate intimately coupled to an epitaxial ferromagnetic (La,Sr)MnO3 film, electric field pulse sequences of less than 6 kV/cm induce large, reversible, and bistable remanent strains. The magnetic anisotropy symmetry reversibly switches from a highly anisotropic two-fold state to a more isotropic one, with concomitant changes in resistivity. Anisotropy changes at the scale of a single ferromagnetic domain were measured using X-ray microscopy, with electric-field dependent magnetic domain reversal showing that the energy barrier for magnetization reversal is drastically lowered. Free energy calculations confirm this barrier lowering by up to 70% due to the anisotropic strain changes generated by the substrate. Thus, we demonstrate that an electric field pulse can be used to ‘set’ and ‘reset’ the magnetic anisotropy orientation and resistive state in the film, as well as to lower the magnetization reversal barrier, showing a promising route towards electric-field manipulation of multifunctional nanostructures at room temperature.
机译:在模型人工多铁系统中,该方法由紧密耦合到外延铁磁(La,Sr)MnO3膜的(011)取向铁电Pb(Mg,Nb,Ti)O3衬底组成,电场脉冲序列小于6 kV / cm诱导出大的,可逆的和双稳态的剩余菌株。磁各向异性的可逆性从高度各向异性的二重状态可逆地转换为更各向同性的状态,伴随着电阻率的变化。使用X射线显微镜测量了单个铁磁畴范围内的各向异性变化,其中电场依赖性的磁畴反转表明,磁化反转的能垒大大降低。自由能的计算证实了由于衬底产生的各向异性应变变化,该势垒降低了多达70%。因此,我们证明了电场脉冲可用于“设置”和“重置”薄膜中的磁各向异性方向和电阻状态,以及降低磁化反转势垒,这显示了通往电场操纵的有希望的途径室温下多功能纳米结构的制备。

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