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Electrically driven transient and permanent phase transformations in highly strained epitaxial BiFeO3 thin films

机译:高度紧张的外延BifeO3薄膜中的电动瞬态和永久相变

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摘要

Electric-field-driven phase transformation phenomena in multiferroic BiFeOsub3/sub are directly linked to the functionalities of electronic devices based on multiferroic materials. Understanding how the transformation evolves at the nanoscale under the influence of an electric field will provide fascinating insights into key parameters that utilize the transformation features. Here, we report both the electric-field-driven transient and permanent phase transformations in highly strained BiFeOsub3/sub thin films and their transformation dynamics at the nanoscale. We found that two distinct transient and permanent phase transformations were triggered below and above a coercive voltage of the polymorphic phase, indicating that ferroelectric polarization switching could promote permanent phase transformations. We also found that the transient transformations evolve via complex phase boundary motions between the coexisting phases, whereas permanent transformations occurred via nucleation of the other phases.
机译:多体式BIFEO 3 中的电场驱动的相变现象直接连接到基于多二二种材料的电子设备功能。了解如何在电场的影响下在纳米级在纳米级演变将提供迷人的见解,以利用变换特征的关键参数。在这里,我们在高度紧张的Bifeo 3 薄膜中报告了电场驱动的瞬态和永久相位变换及其在纳米级的转化动力学。我们发现,在低于多态相的矫顽电压下触发了两个不同的瞬态和永久相变,表明铁电偏振切换可以促进永久相变。我们还发现瞬态变换通过共存阶段之间的复杂相边界运动而发展,而通过其他阶段的成核发生永久性变换。

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