Suppression of Octahedral Tilts and Associated Changes of Electronic Properties at Epitaxial Oxide Heterostructure Interfaces
Borisevich, A. · Chang, H. J. · Huijben, M. · Oxley, M. P. · Okamoto, S. · Niranjan, M. K. · Burton, J. D. · Tsymbal, E. Y. · Chu, Y. H. · Yu, P. · Ramesh, R. · Kalinin, S. V. · Pennycook, S. J.
الأصل · EN
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-La0.7Sr0.3MnO3 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 and elucidate associated changes in electronic properties in a thin layer directly adjacent to the interface.
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