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Entanglement Properties of the One-Dimensional Dimerized Fermi-Hubbard Model

Strongly Correlated Electrons 2026-02-25 v1

Abstract

We study the entanglement properties of the one-dimensional dimerized Fermi-Hubbard model. Using a matrix-product-state approach, we compute the ground state and identify two insulating phases at 1/2- and 3/4-filling, along with a metallic phase, whose mechanisms can be characterized by their entanglement spectra. Our findings indicate that the two insulating phases are distinct, implying that the phase at 1/2-filling has a charge gap arising from the band gap, which is enhanced by repulsive interactions, while the phase at 3/4-filling exhibits a Mott gap resulting from particle interactions. This difference between the two insulating phases is reflected in the scaling properties of the half-chain entanglement entropy and the distribution of the entanglement spectrum.

Keywords

Cite

@article{arxiv.2602.20990,
  title  = {Entanglement Properties of the One-Dimensional Dimerized Fermi-Hubbard Model},
  author = {Min-Chul Cha and Hoon Beom Kwon and Ji-Woo Lee and Myung-Hoon Chung},
  journal= {arXiv preprint arXiv:2602.20990},
  year   = {2026}
}

Comments

6 pages and 5 figures