Lattice and magnetic effects in doped manganites

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Abstract

The 'double exchange' mechanism and Jahn-Teller instabilities are shown to account for the low-temperature properties of slightly doped LaMnO3 in the framework of the band insulator model. Analysis of the doping of La1-xAxMnO3 with divalent A atoms suggests that Coulomb forces cause holes to be localized near dopants, which makes the formation of conducting clusters along these charged centers a major factor in the physics of such compounds. A percolation theory analysis of experimental data is given. Two-phase coexistence regime and the large-volume Fermi surface at high concentrations are discussed. Relevance of some of the results to doping physics in cuprates is suggested.

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Gor’Kov, L. P. (1998). Lattice and magnetic effects in doped manganites. Uspekhi Fizicheskikh Nauk. Russian Academy of Sciences. https://doi.org/10.3367/ufnr.0168.199806g.0665

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