Stripe orders in the extended Hubbard model
arXiv:cond-mat/0003347 · doi:10.1143/JPSJ.69.3972
Abstract
We study stripe orders of charge and spin density waves in the extended Hubbard model with the nearest-neighbor Coulomb repulsion V within the mean field approximation. We obtain V vs. T(temperature) phase diagram for the on-site Coulomb interaction U/t=8.0 and the filling n=0.8, here t is a nearest-neighbor transfer energy. Our result shows that the diagonal stripe spin density wave state (SDW) is stable for small V, but for large V the most stable state changes to a charge density wave-antiferromagnetic (CDW-AF) state. Especially we find at low temperature and for a certain range of value of V, a vertical stripe CDW-AF state becomes stable.
LaTeX 9 pages, 17 figures, uses jpsj.sty
References in corpus (1)
Cited by in corpus (4)
- Stripe phases - possible ground state of the high-Tc superconductors
- Ubiquitous light real-space pairing from long-range hopping and interactions
- Density-wave steady-state phase of dissipative ultracold fermions with nearest-neighbor interactions
- Superlight pairs in face-centred-cubic extended Hubbard models with strong Coulomb repulsion