Publication | Closed Access
Atomic-Resolution Imaging of Spin-State Superlattices in Nanopockets within Cobaltite Thin Films
103
Citations
21
References
2011
Year
Magnetic PropertiesEngineeringAtomic-resolution ImagingMagnetic ResonanceSpintronic MaterialSpin DynamicSpin PhenomenonCobaltite Thin FilmsMagnetismStrain-induced Domain StructureMaterials ScienceOxide HeterostructuresPhysicsNanotechnologyOxide ElectronicsCo Spin-state OrderingSpin-state SuperlatticesNanocrystalline MaterialMagnetic MediumSpintronicsMaterial AnalysisNanomaterialsApplied PhysicsCondensed Matter PhysicsThin Films
Certain cobalt oxides are known to exhibit ordered Co spin states, as determined from macroscopic techniques. Here we report real-space atomic-resolution imaging of Co spin-state ordering in nanopockets of La(0.5)Sr(0.5)CoO(3-δ) thin films. Unlike the bulk material, where no Co spin-state ordering is found, thin films present a strain-induced domain structure due to oxygen vacancy ordering, inside of which some nanometer sized domains show high-spin Co ions in the planes containing O vacancies and low-spin Co ions in the stoichiometric planes. First-principles calculations provide support for this interpretation.
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