Electron States and Magnetic Phase Diagrams of Strongly Correlated Systems

Various auxiliary-particle approaches to treat electron correlations in many-electron models are analyzed. Applications to copper-oxide layered systems are discussed. The ground-state magnetic phase diagrams are considered within the Hubbard and – exchange (Kondo) models for square and simple cubic...

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Veröffentlicht in:Physics of metals and metallography 2018-12, Vol.119 (13), p.1267-1271
Hauptverfasser: Irkhin, V. Yu, Igoshev, P. A.
Format: Artikel
Sprache:eng
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Zusammenfassung:Various auxiliary-particle approaches to treat electron correlations in many-electron models are analyzed. Applications to copper-oxide layered systems are discussed. The ground-state magnetic phase diagrams are considered within the Hubbard and – exchange (Kondo) models for square and simple cubic lattices vs. band filling and interaction parameter. A generalized Hartree–Fock approximation is employed to treat commensurate ferro-, antiferromagnetic, and incommensurate (spiral) magnetic phases, and also magnetic phase separation. The correlations are taken into account within the Hubbard model by using the slave-boson approach. The main advantage of this approach is correct estimating the contribution of doubly occupied states number and therefore the paramagnetic phase energy.
ISSN:0031-918X
1555-6190
DOI:10.1134/S0031918X18130197