Quantum phase diagram of the generalized ionic Hubbard model for AB$_{n}$ chains
M.E. Torio, A.A. Aligia, G.I. Japaridze, B. Normand

TL;DR
This study maps the quantum phase diagram of the generalized ionic Hubbard model for AB$_{n}$ chains, revealing phase transitions between band insulator, ferroelectric insulator, and correlated insulator phases, with broader phases for larger N.
Contribution
It provides the first detailed quantum phase diagram for N=3 and 4 cases, identifying phase boundaries using energy level crossings and Berry phase analysis, extending previous N=2 results.
Findings
BI and FI phases are broader for N > 2
System remains insulating across parameters
Phase boundary may be metallic
Abstract
We investigate the ground-state phase diagram of the Hubbard model for the AB chain with filling 1/N, where is the number of atoms per unit cell. In the strong-coupling limit, a charge transition takes place from a band insulator (BI) to a correlated insulator (CI) for increasing on-site repulsion and positive on-site energy difference (energy at A sites lower than at B sites). In the weak-coupling limit, a bosonization analysis suggests that for the physics is qualitatively similar to the case which has already been studied: an intermediate phase emerges, which corresponds to a bond-ordered ferroelectric insulator (FI) with spontaneously broken inversion symmetry. We have determined the quantum phase diagram for the cases and from the crossings of energy levels of appropriate excited states, which correspond to jumps in the…
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