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Magnetic phase transitions in the system La₁₋xBixMnO₃₊λ

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dc.contributor.author Troyanchuk, I.O.
dc.contributor.author Mantytskaja, O.S.
dc.contributor.author Szymczak, H.
dc.contributor.author Shvedun, M.Yu.
dc.date.accessioned 2018-02-09T10:59:15Z
dc.date.available 2018-02-09T10:59:15Z
dc.date.issued 2002
dc.identifier.citation Magnetic phase transitions in the system La₁₋xBixMnO₃₊λ / I.O. Troyanchuk, O.S. Mantytskaja, H.Szymczak, M.Yu. Shvedun // Физика низких температур. — 2002. — Т. 28, № 7. — С. 790-795. — Бібліогр.: 28 назв. — англ. uk_UA
dc.identifier.issn 0132-6414
dc.identifier.other PACS: 72.15.Gd, 75.30.Kz, 75.70.Pa
dc.identifier.uri http://dspace.nbuv.gov.ua/handle/123456789/130236
dc.description.abstract The crystal structure and magnetic properties of the La₁₋xBixMnO₃₊λ system (0⩽x⩽1;λ⩽0.08) are studied as functions of the oxygen and bismuth contents. In oxidized samples La₁₋xBixMnO₃₊λ a phase transition from a ferromagnetic state (rhombohedric phase) to a state of the spin glass type (quasitetragonal phase) is observed with increase of the bismuth concentration. The reduced samples La₁₋xBixMnO₃ are weak ferromagnets down to x⩽0.6 and then transform into a ferromagnetic state. It is supposed that the Bi³⁺ ions stabilize the dx2−y2 orbitals in the nearest Mn³⁺ ions whereas the dz2 orbitals of the La³⁺ ions are stabilized. The orbitally disordered phases and dx2−y2-orbitally ordered phases are ferromagnetic, the dz2-orbitally ordered phases show antiferromagnetic ordering, and the state of the orbital glass type corresponds to a state of the spin glass type. uk_UA
dc.description.abstract The crystal structure and magnetic properties of the La₁₋xBixMnO₃₊λ system (0⩽x⩽1;λ⩽0.08) are studied as functions of the oxygen and bismuth contents. In oxidized samples La₁₋xBixMnO₃₊λ a phase transition from a ferromagnetic state (rhombohedric phase) to a state of the spin glass type (quasitetragonal phase) is observed with increase of the bismuth concentration. The reduced samples La₁₋xBixMnO₃ are weak ferromagnets down to x⩽0.6 and then transform into a ferromagnetic state. It is supposed that the Bi³⁺ ions stabilize the dx2−y2 orbitals in the nearest Mn³⁺ ions whereas the dz2 orbitals of the La³⁺ ions are stabilized. The orbitally disordered phases and dx2−y2-orbitally ordered phases are ferromagnetic, the dz2-orbitally ordered phases show antiferromagnetic ordering, and the state of the orbital glass type corresponds to a state of the spin glass type. uk_UA
dc.description.sponsorship This work was supported in part by the Belarus Fund of Basic Research (Project F00-223). uk_UA
dc.language.iso en uk_UA
dc.publisher Фізико-технічний інститут низьких температур ім. Б.І. Вєркіна НАН України uk_UA
dc.relation.ispartof Физика низких температур
dc.subject Дефекты в кристаллах uk_UA
dc.title Magnetic phase transitions in the system La₁₋xBixMnO₃₊λ uk_UA
dc.type Article uk_UA
dc.status published earlier uk_UA


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