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      Charge Ordering and Polaron Formation in the Magnetoresistive Oxide La0.7Ca0.3MnO3

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          Abstract

          Neutron scattering has been used to study the nature of the ferromagnetic transition in a single crystal of the perovskite La0.7Ca0.3MnO3. Diffuse scattering from lattice polarons develops as the Curie temperature is approached from below, along with short range polaron correlations that are consistent with stripe formation. Both the scattering due to the polaron correlations and the anomalous quasielastic component in the magnetic fluctuation spectrum maximize very close to T_C, in a manner remarkably similar to the resistivity, indicating that they have a common origin.

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          Interaction between thed-Shells in the Transition Metals. II. Ferromagnetic Compounds of Manganese with Perovskite Structure

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            Theory of the Role of Covalence in the Perovskite-Type Manganites[La, M(II)]MnO3

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              Effects of Double Exchange in Magnetic Crystals

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                Author and article information

                Journal
                08 September 2000
                Article
                10.1103/PhysRevLett.85.3954
                cond-mat/0009132
                d1449068-2477-4841-a9fa-5e5f9b2b11d5
                History
                Custom metadata
                4 pages, 4 eps figures, to be published in Phys. Rev. Lett
                cond-mat.str-el

                Condensed matter
                Condensed matter

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