English

Hubbard interaction at finite $T$ on a hexagonal lattice

Strongly Correlated Electrons 2024-11-07 v2 Mesoscale and Nanoscale Physics

Abstract

The temporal finite volume induces significant effects in Monte Carlo simulations of systems in low dimensions, such as graphene, a 2-D hexagonal system known for its unique electronic properties and numerous potential applications. In this work, we explore the behavior of fermions on a hexagonal sheet with a Hubbard-type interaction characterized by coupling UU. This system exhibits zero or near zero-energy excitations that are highly sensitive to finite temperature effects. We compute corrections to the self-energy and the effective mass of low-energy excitations, arriving at a quantization condition that includes the temporal finite volume. These analyses are then conducted for both zero and finite temperatures. Our findings reveal that the first-order O(U)\mathcal{O}(U) contributions are absent, leading to non-trivial corrections starting at O(U2)\mathcal{O}(U^2). We validate our calculations against exact and numerical results obtained from Hybrid Monte Carlo simulations on small lattices.

Keywords

Cite

@article{arxiv.2411.03196,
  title  = {Hubbard interaction at finite $T$ on a hexagonal lattice},
  author = {Lado Razmadze and Thomas Luu},
  journal= {arXiv preprint arXiv:2411.03196},
  year   = {2024}
}

Comments

9 pages, 6 figures, Lattice QCD 2024