On the basis of Quantum Monte Carlo simulations of the two-dimensional Hubbard model which cover the doping range from the under- to the over-doped regime, we find that the single-particle spectral weight A(k,ω) qualitatively reproduces both the momentum (dx2−y2--symmetry) and doping dependence of the pseudogap as found in photoemission experiments. The drastic doping dependence of the spin response χs(q,ω) which is sharp in both q(≈(π,π)) and ω in the under-doped regime but broad and structureless otherwise, identifies remnants of the antiferromagnetic order as the driving mechanism behind the pseudogap and its evolution with doping.
@article{arxiv.cond-mat/9701097,
title = {Pseudogaps and their Interplay with Magnetic Excitations in the doped 2D Hubbard Model},
author = {R. Preuss and W. Hanke and C. Gröber and H. G. Evertz},
journal= {arXiv preprint arXiv:cond-mat/9701097},
year = {2008}
}