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Building a free-energy functional from atomically resolved imaging: Atomic-scale phenomena in La-doped BiFeO_3

机译:从一个原子分辨成像中建立自由能功能:La-Doped Bifeo_3中的原子级现象

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摘要

Scanning transmission electron microscopy (STEM) has enabled mapping of atomic structures of solids with sub-picometer precision, providing insight to the physics of ferroic phenomena and chemical expansion. However, only a subset of information is available, due to projective nature of imaging in the beam direction. Correspondingly, the analysis often relies on the postulated form of macroscopic Landau-Ginzburg energy for the ferroic long-range order parameter, and some predefined relationship between experimentally determined atomic coordinates and the order-parameter field. Here, we propose an approach for exploring the structure of ferroics using reduced order-parameter models constructed based on experimental data only. We develop a four-sublattice model (FSM) for the analytical description of A-cation displacement in (anti)ferroelectric-antiferrodistortive perovskites of ABO(3) type. The model describes the displacements of cation A in four neighboring unit cells and determines the conditions of different structural phases' appearance and stability in ABO(3). We show that FSM explains the coexistence of rhombohedral, orthorhombic, and spatially modulated phases, observed by atomic-resolution STEM in La-doped BiFeO3. Using this approach, we atomically resolve and theoretically model the sublattice asymmetry inherent to the case of the A-site La/Bi cation sublattice in LaxBi1-xFeO3 polymorphs. This approach allows the exploration of ferroic behaviors from experimental data only, without additional assumptions on the nature of the order parameter.
机译:扫描透射电子显微镜(Stem)使具有亚微微尺精度的原子结构的原子结构的映射,为铁义现象和化学膨胀的物理提供了洞察力。然而,由于在光束方向上成像的投影性质,只有信息的子集。相应地,分析通常依赖于宏观Landau-Ginzburg能量的假设形式,用于铁龙远程订单参数,以及在实验确定的原子坐标和订单参数场之间的一些预定义的关系。在这里,我们提出了一种利用基于实验数据构建的减少的订单参数模型来探索菲科的结构的方法。我们开发了四个子分子模型(FSM),用于ABO(3)型(3)型的(抗)铁电 - 反晶间蠕动性钙钛矿的阳离子位移的分析描述。该模型描述了阳离子A在四个相邻单元细胞中的位移,并确定ABO(3)中不同的结构阶段外观和稳定性的条件。我们表明FSM通过在La-掺杂BifeO3中的原子分辨率茎观察到的rhombehedral,正交和空间和空间上调节阶段的共存。使用这种方法,我们原子地解决和理论上模拟了LAXBI1-XFEO3多晶型物中A-PATE LA / BI阳离子子分子的案例固有的子分子不对称性。这种方法允许从实验数据探索异行为,而无需对订单参数的性质的额外假设。

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  • 来源
    《Physical review》 |2019年第19期|195440.1-195440.6|共6页
  • 作者单位

    Natl Acad Sci Ukraine Inst Phys 46 Pr Nauky UA-03028 Kiev Ukraine;

    Natl Acad Sci Ukraine Inst Problems Mat Sci Krjijanovskogo 3 UA-03142 Kiev Ukraine;

    South China Normal Univ South China Acad Optoelect Inst Adv Mat Guangzhou 510006 Guangdong Peoples R China|South China Normal Univ South China Acad Optoelect Guangdong Prov Key Lab Opt Informat Mat & Technol Guangzhou 510006 Guangdong Peoples R China;

    Oak Ridge Natl Lab Ctr Nanophase Mat Sci Oak Ridge TN 37831 USA;

    Oak Ridge Natl Lab Ctr Nanophase Mat Sci Oak Ridge TN 37831 USA;

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