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Anomalous Expansion of the Copper-Apical Oxygen Distance in Superconducting La$_{2}$CuO$_{4}$ - La$_{1.55}$Sr$_{0.45}$CuO$_{4}$ Bilayers

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arxiv 0903.2097 v2 pith:OR3FSNZQ submitted 2009-03-12 cond-mat.mtrl-sci cond-mat.supr-con

classification cond-mat.mtrl-scicond-mat.supr-con
keywords superconductingoxygencopper-apicaldistancephase-retrievalaccurateanomalousapical
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We have introduced an improved X-ray phase-retrieval method with unprecedented speed of convergence and precision, and used it to determine with sub-{\AA}ngstrom resolution the complete atomic structure of an ultrathin superconducting bilayer film, composed of La$_{1.55}$Sr$_{0.45}$CuO$_{4}$ and La$_{2}$CuO$_{4}$ neither of which is superconducting by itself. The results show that phase-retrieval diffraction techniques enable accurate measurement of structural modifications in near-surface layers, which may be critically important for elucidation of surface-sensitive experiments. Specifically we find that close to the sample surface the unit cell size remains constant while the copper-apical oxygen distance shows a dramatic increase, by as much as 0.45 {\AA}. The apical oxygen displacement is known to have a profound effect on the superconducting transition temperature.

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  1. Topotactic oxidation of Ruddlesden-Popper nickelates reveals new structural family: oxygen-intercalated layered perovskites

    cond-mat.mtrl-sci 2025-06 conditional novelty 8.0 of 10

    Ozone annealing of Ruddlesden-Popper nickelate films intercalates about 0.7 oxygen atoms per formula unit into the rock-salt spacer layers, creating a new layered perovskite family with strong metal-oxygen hybridization.

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