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Orbital Degree of Freedom and Phase Separation in Ferromagnetic Manganites at Finite Temperatures

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arxiv cond-mat/9902266 v1 pith:KKP56EVY submitted 1999-02-19 cond-mat.str-el

classification cond-mat.str-el
keywords orbitalphaseseparationconcentrationinteractionsferromagneticholemanganites
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The spin and orbital phase diagram for perovskite manganites are investigated as a function of temperature and hole concentration. The superexchange and double exchange interactions dominate the ferromagnetic phases in the low and high concentration regions of doped holes, respectively.The two interactions favor different orbital states each other. Between the phases, two interactions compete with each other and the phase separation appears in the wide range of temperature and hole concentration. The anisotropy of the orbital space causes discontinuous changes of the orbital state and promotes the phase separation. The relation between the phase separation and the stripe- and sheet-type charge segregation is discussed.

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