Magnetic phase transitions and unusual antiferromagnetic states in the Hubbard model
arXiv:1710.00712 · doi:10.1016/j.jmmm.2017.10.007
Abstract
Ground state magnetic phase diagrams of the square and simple cubic lattices are investigated for the narrow band Hubbard model within the slave-boson approach by Kotliar and Ruckenstein. The transitions between saturated (half-metallic) and non-saturated ferromagnetic phases as well as similar transition in antiferromagnetic (AFM) state are considered in the three-dimensional case. Two types of saturated antiferromagnetic state with different concentration dependences of sublattice magnetization are found in the two-dimensional case in the vicinity of half-filling: the state with a gap between AFM subbands and AFM state with large electron mass. The latter state is hidden by the phase separation in the finite-U case.
Invited Report on the Moscow International Symposium on Magnetism MISM-2017, 7 pages, J. Magn. Magn. Mater., in press
References in corpus (1)
Cited by in corpus (7)
- Electronic phase separation: recent progress in the old problem
- Modern Physics of the Condensed State: Strong Correlations and Quantum Topology
- Itinerant magnetism of chromium under pressure: a DFT+DMFT study
- Metal-insulator transition and antiferromagnetism in the generalized Hubbard model: Treatment of correlation effects
- Spin-orbit coupling induced orbital entanglement in a three-band Hubbard model
- Quantum topological transitions and spinons in metallic ferro- and antiferromagnets
- Steady and dynamic magnetic phase transitions in interacting quantum dots arrays coupled with leads