English

Ising tricriticality in the extended Hubbard model with bond dimerization

Strongly Correlated Electrons 2016-06-14 v2

Abstract

We explore the quantum phase transition between Peierls and charge-density-wave insulating states in the one-dimensional, half-filled, extended Hubbard model with explicit bond dimerization. We show that the critical line of the continuous Ising transition terminates at a tricritical point, belonging to the universality class of the tricritical Ising model with central charge c=7/10c=7/10. Above this point, the quantum phase transition becomes first order. Employing a numerical matrix-product-state based (infinite) density-matrix renormalization group method we determine the ground-state phase diagram, the spin and two-particle charge excitations gaps, and the entanglement properties of the model with high precision. Performing a bosonization analysis we can derive a field description of the transition region in terms of a triple sine-Gordon model. This allows us to derive field theory predictions for the power-law (exponential) decay of the density-density (spin-spin) and bond-order-wave correlation functions, which are found to be in excellent agreement with our numerical results.

Keywords

Cite

@article{arxiv.1604.01228,
  title  = {Ising tricriticality in the extended Hubbard model with bond dimerization},
  author = {Satoshi Ejima and Fabian H. L. Essler and Florian Lange and Holger Fehske},
  journal= {arXiv preprint arXiv:1604.01228},
  year   = {2016}
}

Comments

Editors' Suggestion. 9 pages, 9 figures, final version

R2 v1 2026-06-22T13:25:29.142Z