English

Stripe correlations in the two-dimensional Hubbard-Holstein model

Strongly Correlated Electrons 2022-12-05 v1

Abstract

Several state-of-the-art numerical methods have observed static or fluctuating spin and charge stripes in doped two-dimensional Hubbard models, suggesting that these orders play a significant role in shaping the cuprate phase diagram. Many experiments, however, also indicate that the cuprates have strong electron-phonon (ee-ph) coupling, and it is unclear how this interaction influences stripe correlations. We study static and fluctuating stripe orders in the doped singleband Hubbard-Holstein model using zero temperature variational Monte Carlo and finite temperature determinant quantum Monte Carlo. We find that the lattice couples more strongly with the charge component of the stripes, leading to an enhancement or suppression of stripe correlations, depending on model parameters like the next-nearest-neighbor hopping tt^\prime or phonon energy Ω\Omega. Our results help elucidate how the ee-ph interaction can tip the delicate balance between stripe and superconducting correlations in the Hubbard-Holstein model with implications for our understanding of the high-TcT_\mathrm{c} cuprates.

Keywords

Cite

@article{arxiv.2205.15464,
  title  = {Stripe correlations in the two-dimensional Hubbard-Holstein model},
  author = {Seher Karakuzu and Andy Tanjaroon Ly and Peizhi Mai and James Neuhaus and Thomas A. Maier and Steven Johnston},
  journal= {arXiv preprint arXiv:2205.15464},
  year   = {2022}
}

Comments

9 pages, 5 figures plus supplementary material. Comments are welcome

R2 v1 2026-06-24T11:33:51.365Z