Effective Hamiltonian for a Half-filled Asymmetric Ionic Hubbard Chain with Alternating On-site Interaction
arXiv:1506.06109 · doi:10.1142/S0217979215502604
Abstract
We derive an effective spin Hamiltonian for the one-dimensional half-filled asymmetric ionic Hubbard model with alternating on-site interaction in the limit of strong repulsion. It is shown that the effective Hamiltonian is that of a spin anisotropic Heisenberg chain with alternating next-nearest-neighbor and three-spin couplings in the presence of a uniform and a staggered magnetic field.
Revtex version, 20 pages; no figures or tables
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Cited by in corpus (5)
- Mass-Imbalanced Ionic Hubbard Chain
- Two-doublon Bloch oscillations in the mass-imbalanced extended Fermi-Hubbard model
- Quench dynamics in the one-dimensional mass-imbalanced ionic Hubbard model
- The large expansion for a half-filled asymmetric Hubbard model on a triangular ladder in the presence of spin-dependent magnetic flux
- Repulsion driven metallic phase in the ground state of the half-filled ionic Hubbard chain