Phase diagram description of the CaCu$_3$Fe$_4$O$_{12}$ double perovskite
Ivon R. Buitrago, C. I. Ventura, R. Allub

TL;DR
This paper develops a microscopic model to describe the temperature-driven phase transition in CaCu$_3$Fe$_4$O$_{12}$, capturing charge disproportionation, magnetic states, and orbital occupations, and maps its phase diagram.
Contribution
The study introduces a detailed effective model for CaCu$_3$Fe$_4$O$_{12}$ that includes all relevant Fe orbitals and predicts various phases, including charge disproportionation and orbital selectivity.
Findings
Phase diagram includes charge disproportionated and orbital-selective phases.
Model parameters successfully reproduce the observed phase transition.
Predicted phases may be relevant for related compounds in the same family.
Abstract
CaCuFeO exhibits a temperature-induced transition from a ferrimagnetic-insulating phase, in which Fe appears charge disproportionated, as Fe and Fe, to a paramagnetic-metallic phase at temperatures above 210 K, with Fe present. To describe it, we propose a microscopic effective model with two interpenetrating sublattices of Fe and Fe, respectively, being the Fe-charge disproportionation. We include all -Fe orbitals: localized orbitals, with spin 3/2 and magnetically coupled, plus two degenerate itinerant orbitals with local and nearest-neighbor (NN) electron correlations, and hopping between NN orbitals of the same symmetry. Allub and Alascio previously proposed a model to describe the phase transition in LaCuFeO from a paramagnetic-metal to an…
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