Abstract:
We review lattice, thermodynamic, transport, high frequency, and optical properties of Re1−xDxMnO3 manganites, where Re is rare earth, D is usually alkaline-earth element. The most famous effect observed in the manganites near Curie temperature is colossal magnetoresistance (CMR). We show that the temperature and magnetic field dependence of the magnetocaloric effect, resistivity, magnetoresistance, and thermopower near TC depends on whether the magnetic transition is of first or second order. The possibility of application of the well-known Banergee criterion is discussed. Special attention is paid to various inhomogeneities characteristic of the manganites, including coexistence of different crystallographic phases, metallic inclusions in semiconductor matrix, and polarons.
The work was performed within the framework of the state assignment to FANO of the Russian Federation (theme: Spin, No. 01201463330) and the Program No. 15-12-2-17 of the Ural Branch of the Russian Academy of Sciences.
Received:June 15, 2017 Revised:July 14, 2017 Accepted: July 19, 2017
Citation:
N. G. Bebenin, R. I. Zainullina, V. V. Ustinov, “Colossal magnetoresistance manganites”, UFN, 188:8 (2018), 801–820; Phys. Usp., 61:8 (2018), 719–738
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