Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831, USA.
Phys Rev Lett. 2010 Aug 20;105(8):087204. doi: 10.1103/PhysRevLett.105.087204. Epub 2010 Aug 19.
Epitaxial oxide interfaces with broken translational symmetry have emerged as a central paradigm behind the novel behaviors of oxide superlattices. Here, we use scanning transmission electron microscopy to demonstrate a direct, quantitative unit-cell-by-unit-cell mapping of lattice parameters and oxygen octahedral rotations across the BiFeO3-La0.7 Sr0.3 MnO3 interface to elucidate how the change of crystal symmetry is accommodated. Combined with low-loss electron energy loss spectroscopy imaging, we demonstrate a mesoscopic antiferrodistortive phase transition near the interface in BiFeO3 and elucidate associated changes in electronic properties in a thin layer directly adjacent to the interface.
具有非平移对称的外延氧化物界面已成为氧化物超晶格新特性的核心范例。在这里,我们使用扫描透射电子显微镜直接、定量地对 BiFeO3-La0.7 Sr0.3 MnO3 界面的晶格参数和氧八面体旋转进行单元到单元的映射,以阐明如何适应晶体对称性的变化。结合低损耗电子能量损失光谱成像,我们证明了 BiFeO3 中界面附近的介观反铁电畴相变,并阐明了与界面直接相邻的薄层中电子性质的相关变化。