English

A comprehensive study of bond bipolaron superconductivity in triangular lattice

Superconductivity 2025-07-11 v1 Strongly Correlated Electrons

Abstract

We employ the diagrammatic Monte Carlo method with a lattice path-integral formulation for both electron and phonon degrees of freedom to investigate the formation and properties of bond polarons and bipolarons on a two-dimensional triangular lattice. In the adiabatic regime (ω/t<1.0\omega/t < 1.0), single polarons remain light with a small effective mass, while bipolarons remain compact and lightweight, resulting in a high superfluid transition temperature TcT_c. We systematically study the dependence of TcT_c on electron-phonon coupling strength and on-site interaction in the bond bipolaron model. Our results show that a moderate on-site repulsion enhances TcT_c by stabilizing compact yet lightweight bipolarons, leading to high-TcT_c superconductivity in the dilute limit. Notably, the triangular lattice sustains relatively high TcT_c across a wide range of phonon frequencies, outperforming square lattice geometry. This enhancement arises from the higher coordination number and the bond-centered nature of the electron-phonon coupling. These findings suggest that triangular lattice geometry offers a promising platform for realizing high-TcT_c bipolaronic superconductivity.

Keywords

Cite

@article{arxiv.2507.07662,
  title  = {A comprehensive study of bond bipolaron superconductivity in triangular lattice},
  author = {Chao Zhang},
  journal= {arXiv preprint arXiv:2507.07662},
  year   = {2025}
}

Comments

9 pages, 9 figures

R2 v1 2026-07-01T03:54:38.599Z