Tackling the Sign Problem in the Doped Hubbard Model with Normalizing Flows
Strongly Correlated Electrons
2026-03-20 v1 Machine Learning
High Energy Physics - Lattice
Abstract
The Hubbard model at finite chemical potential is a cornerstone for understanding doped correlated systems, but simulations are severely limited by the sign problem. In the auxiliary-field formulation, the spin basis mitigates the sign problem, yet severe ergodicity issues have limited its use. We extend recent advances with normalizing flows at half-filling to finite chemical potential by introducing an annealing scheme enabling ergodic sampling. Compared to state-of-the-art hybrid Monte Carlo in the charge basis, our approach accurately reproduces exact diagonalization results while reducing statistical uncertainties by an order of magnitude, opening a new path for simulations of doped correlated systems.
Cite
@article{arxiv.2603.18205,
title = {Tackling the Sign Problem in the Doped Hubbard Model with Normalizing Flows},
author = {Dominic Schuh and Lena Funcke and Janik Kreit and Thomas Luu and Simran Singh},
journal= {arXiv preprint arXiv:2603.18205},
year = {2026}
}
Comments
10 pages, 8 figures