Physical Review Letters · 2006 · 69 citations · 10 references
EngineeringElectronic StructureMagnetismMultiferroicsNd0.5sr0.5mno3 Thin FilmManganite Thin FilmNovel StructureAnisotropic MaterialMaterials SciencePhysicsAnisotropic StressCrystallographyTransition Metal ChalcogenidesSpintronicsCubic NotationMaterial AnalysisApplied PhysicsCondensed Matter PhysicsThin Films
A novel structure of orbital ordering is found in a Nd0.5Sr0.5MnO3 thin film, which exhibits a clear first-order transition, by synchrotron x-ray diffraction measurements. Lattice parameters vary drastically at the metal-insulator transition at 170 K (= T(MI)), and superlattice reflections appear below 140 K (= T(CO)). The electronic structure between T(MI) and T(CO) is identified as A-type antiferromagnetic with a d(x2-y2) ferro-orbital ordering. The new type of antiferro-orbital ordering characterized by the wave vector (1/4 1/4 1/2) in cubic notation emerges below T(CO). The accommodation of the large lattice distortion at the first-order phase transition and the appearance of the novel orbital ordering are brought about by the anisotropy in the substrate, a new parameter for the phase control.
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Orbital Physics in Transition-Metal Oxides
Y. Tokura, Naoto Nagaosa · Science · 2000 · 2.4K citations
Engineering, Electron Diffraction, Strongly Correlated Electron Systems +18
Orbital-State-Mediated Phase-Control of Manganites
Yoshinori Konishi, Zhong Fang, Makoto Izumi et al. · Journal of the Physical Society of Japan · 1999 · 335 citations
Phase Diagram of Tetragonal Manganites
Zhilai Fang, I. V. Solovyev, K. Terakura · Physical Review Letters · 2000 · 327 citations