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Electronic Hamiltonian for transition-metal oxide compounds

Erwin Müller-Hartmann and Elbio Dagotto
Phys. Rev. B 54, R6819(R) – Published 1 September 1996
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Abstract

An effective electronic Hamiltonian for transition-metal oxide compounds is presented. For Mn oxides, the Hamiltonian contains spin-2 "spins" and spin-32 "holes" as degrees of freedom. The model is constructed from the Kondo-lattice Hamiltonian for mobile eg electrons and localized t2g spins, in the limit of a large Hund's coupling. The effective electron-bond-hopping amplitude fluctuates in sign as the total spin of the bond changes. In the large spin limit, the hopping amplitude for electrons aligned with the core ions is complex and a Berry phase is accumulated when these electrons move in loops. The model is compared with the standard double-exchange Hamiltonian. Both have ferromagnetic ground states at finite hole density and low temperatures, but their critical temperatures could be substantially different due to the frustration effects induced by the Berry phase.

  • Received 23 April 1996

DOI:https://doi.org/10.1103/PhysRevB.54.R6819

©1996 American Physical Society

Authors & Affiliations

Erwin Müller-Hartmann

  • Institut für Theoretische Physik, Universität zu Köln, Zülpicher Strasse 77, D-50937 Köln, Germany

Elbio Dagotto

  • Department of Physics and National High Magnetic Field Laboratory, Florida State University, Tallahassee, Florida 32306

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Issue

Vol. 54, Iss. 10 — 1 September 1996

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