Oak Ridge National Laboratory, Institute for Functional Imaging of Materials and Center for Nanophase Materials Science, Oak Ridge, TN, 37831, USA.
Department of Materials Science and Engineering, University of California, Berkeley, CA, 94720, USA.
Nat Commun. 2017 Nov 13;8(1):1468. doi: 10.1038/s41467-017-01733-8.
Flexoelectricity refers to electric polarization generated by heterogeneous mechanical strains, namely strain gradients, in materials of arbitrary crystal symmetries. Despite more than 50 years of work on this effect, an accurate identification of its coupling strength remains an experimental challenge for most materials, which impedes its wide recognition. Here, we show the presence of flexoelectricity in the recently discovered polar vortices in PbTiO/SrTiO superlattices based on a combination of machine-learning analysis of the atomic-scale electron microscopy imaging data and phenomenological phase-field modeling. By scrutinizing the influence of flexocoupling on the global vortex structure, we match theory and experiment using computer vision methodologies to determine the flexoelectric coefficients for PbTiO and SrTiO. Our findings highlight the inherent, nontrivial role of flexoelectricity in the generation of emergent complex polarization morphologies and demonstrate a viable approach to delineating this effect, conducive to the deeper exploration of both topics.
柔电性是指在任意晶体对称性的材料中,由不均匀机械应变(即应变梯度)产生的电极化。尽管对该效应的研究已经超过 50 年,但对于大多数材料来说,准确识别其耦合强度仍然是一个实验挑战,这阻碍了它的广泛认可。在这里,我们通过机器学习分析原子尺度电子显微镜成像数据和唯象相场建模相结合,在最近发现的 PbTiO/SrTiO 超晶格中的极性涡旋中证明了柔电性的存在。通过仔细研究柔耦合对全局涡旋结构的影响,我们使用计算机视觉方法将理论和实验进行匹配,以确定 PbTiO 和 SrTiO 的柔电系数。我们的研究结果突出了柔电性在新兴复杂极化形态生成中的固有、非平凡作用,并展示了一种可行的方法来描绘这种效应,有利于更深入地探索这两个主题。