English

Superconductivity in the repulsive Hubbard model on different geometries induced by density-assisted hopping

Strongly Correlated Electrons 2026-03-10 v2 Quantum Gases Superconductivity

Abstract

We study the effect of density-assisted hopping on different dimerized lattice geometries, such as bilayers and ladder structures. We show analytically that the density-assisted hopping induces an attractive interaction in the lower (bonding) band of the dimer structure and a repulsion in the upper (anti-bonding) band. Overcoming the onsite repulsion, this can lead to the appearance of superconductivity. The superconductivity depends strongly on the filling, and present a pairing structure more complex than s-wave pairing. Combining numerical and analytical methods such as the matrix product states ansatz, bosonization and perturbative calculations we map out the phase diagram of the two-leg ladder system and identify its superconducting phase. We characterize the transition from the non-density-assisted repulsive regime to the spin-gapped superconducting regime as a Berezinskii-Kosterlitz-Thouless transition.

Keywords

Cite

@article{arxiv.2510.09363,
  title  = {Superconductivity in the repulsive Hubbard model on different geometries induced by density-assisted hopping},
  author = {Franco T. Lisandrini and Edmond Orignac and Roberta Citro and Ameneh Sheikhan and Corinna Kollath},
  journal= {arXiv preprint arXiv:2510.09363},
  year   = {2026}
}