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Specific features of local structural,valence, and magnetic states of iron ions in the perovskite Bi0.5Ca0.5FeO3
Authors:V. S. Pokatilov  A. O. Konovalova  V. V. Pokatilov
Affiliation:1. Moscow State Technical University of Radio Engineering, Electronics, and Automation, pr. Vernadskogo 78, Moscow, 119454, Russia
Abstract:The perovskite Bi0.5Ca0.5FeO3 has been investigated using the Mössbauer effect at temperatures of 295 and 675 K. The measured temperature of the magnetic phase transition (Néel temperature) is T N = 640 ± 10 K. Above the Néel temperature, there are two nonequivalent structural states of iron ions. In the perovskite Bi0.5Ca0.5FeO3 at room temperature, there are seven most probable nonequivalent magnetic states of iron ions with significantly different values of the hyperfine interaction parameters. Four iron states correspond to Fe3+ ions in the octahedral oxygen environment, and three iron states correspond to Fe3+ ions in the tetrahedral oxygen environment.
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