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首页> 外文期刊>Physical review >Domain walls in a perovskite oxide with two primary structural order parameters: First-principles study of BiFeO_3
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Domain walls in a perovskite oxide with two primary structural order parameters: First-principles study of BiFeO_3

机译:具有两个主要结构顺序参数的钙钛矿氧化物的畴壁:BiFeO_3的第一性原理研究

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We present a first-principles study of ferroelectric domain walls (FE-DWs) in multiferroic BiFeO_3 (BFO), a material in which the FE order parameter coexists with antiferrodistortive (AFD) modes involving rotations of the O_6, octahedra. We find that the energetics of the DWs are dominated by the capability of the domains to match their O_6 octahedra rotation patterns at the plane of the wall, so that the distortion of the oxygen groups is minimized. Our results thus indicate that, in essence, it is the discontinuity in the AFD order parameter, and not the change in the electric polarization, that decides which crystallographic planes are most likely to host BFO's FE-DWs. Such a result clearly suggests that the O_6 rotational patterns play a primary role in the FE phase of this compound, in contrast with the usual (implicit) assumption that they are subordinated to the FE order parameter. Our calculations show that, for the most favorable cases in BFO, the DW energy amounts to several tens of mJ/m2, which is higher than what was computed for other ferroelectric perovskites with no O_6 rotations. Interestingly, we find that the structure of BFO at the most stable DWs resembles the atomic arrangements that are characteristic of low-lying (meta)stable phases of the material. Further, we argue that our results for the DWs of bulk BFO are related with the nanoscale-twinned structures that Prosandeev et al. [Adv. Funct. Mater. (2012)] have recently predicted to occur in this compound, and suggest that BFO can be viewed as a polytypic material. Our work thus contributes to shape a coherent picture of the structural variants that BFO can present and the way in which they are related.
机译:我们提出了多铁性BiFeO_3(BFO)中的铁电畴壁(FE-DWs)的第一性原理研究,该材料中的FE阶参数与涉及O_6八面体旋转的反铁畸变(AFD)模式共存。我们发现,DWs的高能性主要取决于畴在壁平面处匹配其O_6八面体旋转模式的能力,从而使氧基团的畸变最小。因此,我们的结果表明,从根本上说,决定哪个晶体平面最有可能承载BFO的FE-DW的因素是AFD有序参数的不连续性,而不是电极化的变化。这样的结果清楚地表明,O_6旋转模式在该化合物的FE相中起主要作用,这与通常(隐式)假设它们服从FE级参数相反。我们的计算表明,对于BFO中最有利的情况,DW能量总计为数十mJ / m2,这比没有O_6旋转的其他铁电钙钛矿的计算结果要高。有趣的是,我们发现在最稳定的DW处BFO的结构类似于原子排列,该排列是材料的低位(亚)稳定相的特征。此外,我们认为,我们对散装BFO的DW的结果与Prosandeev等人的纳米级孪生结构有关。 [高级功能母校(2012年)]最近预测该化合物中将发生这种现象,并建议BFO可被视为一种多型材料。因此,我们的工作有助于形成BFO可以呈现的结构变体及其相关方式的连贯图片。

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