English

Disorder Suppression of Charge Density Waves in the Honeycomb Holstein Model

Strongly Correlated Electrons 2026-02-10 v3 Statistical Mechanics

Abstract

The formation of charge-density-wave order in Dirac fermion systems via electron-phonon coupling represents a significant topic in condensed matter physics. In this work, we investigate this phenomenon within the Holstein model on the honeycomb lattice, with a specific focus on the effect of disorder. While the interplay between electron-electron interactions and disorder has long been a central theme in the field, recent attention has increasingly turned to the combined influence of disorder and electron-phonon coupling. Using determinant quantum Monte Carlo simulations, we concentrate on the phase transitions of charge-density-wave order on the honeycomb lattice. Disorder is introduced through the random hopping of electrons in the system, which can localize electrons via the Anderson effect. Our primary result is that disorder suppresses the charge-density-wave phase, and the interplay between disorder and electron-phonon interactions extends the phase area. We also determine the transition temperature βc\beta_c to the ordered phase as a function of the electron-phonon coupling. Additionally, we observed a suppression of electron kinetic energy and dc conductivity under disorder, highlighting the role of Anderson localization in the degradation of electronic transport. These findings offer significant theoretical insight into the stability and critical phenomena of correlated phases in disordered two-dimensional systems.

Keywords

Cite

@article{arxiv.2512.01487,
  title  = {Disorder Suppression of Charge Density Waves in the Honeycomb Holstein Model},
  author = {Guangchao Li and Lifei Zhang and Tianxing Ma and Qionglin Dai and Lufeng Zhang},
  journal= {arXiv preprint arXiv:2512.01487},
  year   = {2026}
}

Comments

10 pages, 12 figures, theoretical study on condensed matter physics (honeycomb lattice Holstein model); no generative AI tools used in research