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Phase diagrams of magnetic state transformations in multiferroic composites controlled by size, shape and interfacial coupling strain

机译:受尺寸,形状和界面耦合应变控制的多铁复合材料中磁状态转变的相图

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This work aims to give a comprehensive view of magnetic state stability and transformations in PZT-film/FeGa-dot multiferroic composite systems due to the combining effects of size, shape and interfacial coupling strain. It is found that the stable magnetic state of the FeGa nanodots is not only a function of the size and shape of the nanodot but also strongly sensitive to the interfacial coupling strain modified by the polarization state of PZT film. In particular, due to the large magnetostriction of FeGa, the phase boundaries between different magnetic states (i.e., in-plane/out-of-plane polar states, and single-/multi-vortex states) of FeGa nanodots can be effectively tuned by the polarization-mediated strain. Fruitful strain-mediated transformation paths of magnetic states including those between states with different orderings (i.e., one is polar and the other is vortex), as well as those between states with the same ordering (i.e., both are polar or both are vortex) have been revealed in a comprehensive view. Our result sheds light on the potential of utilizing electric field to induce fruitful magnetic state transformation paths in multiferroic film-dot systems towards a development of novel magnetic random access memories.
机译:这项工作旨在给出由于尺寸,形状和界面耦合应变共同作用而在PZT膜/ FeGa点多铁复合系统中的磁态稳定性和相变的全面视图。发现FeGa纳米点的稳定磁态不仅是纳米点的大小和形状的函数,而且对由PZT膜的偏振态改变的界面耦合应变非常敏感。特别地,由于FeGa的大的磁致伸缩性,FeGa纳米点的不同磁态(即,面内/面外极性态和单/多涡旋态)之间的相界可以通过以下方式有效地调整:极化介导的应变。磁状态的应变介导的富有成效的转变路径,包括具有不同顺序的状态之间(即,一个是极性,而另一个是涡旋)之间以及那些具有相同顺序的状态之间(即,两个都是极性或两个都是涡流)已全面揭示。我们的研究结果揭示了利用电场在多铁性薄膜点系统中诱导富有成效的磁态转换路径的潜力,从而开发了新型的磁性随机存取存储器。

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