We study the Mott transition in a frustrated Hubbard model with next-nearest neighbor hopping at half-filling. The interplay between interaction, dimensionality and geometric frustration closes the one-dimensional Mott gap and gives rise to a metallic phase with Fermi surface pockets. We argue that they emerge as a consequence of remnant one-dimensional Umklapp scattering at the momenta with vanishing interchain hopping matrix elements. In this pseudogap phase, enhanced d-wave pairing correlations are driven by antiferromagnetic fluctuations. Within the adopted cluster dynamical mean-field theory on the 8×2 cluster and down to our lowest temperatures the transition from one to two dimensions is continuous.
@article{arxiv.1205.0404,
title = {Dimensional-crossover-driven Mott transition in the frustrated Hubbard model},
author = {Marcin Raczkowski and Fakher F. Assaad},
journal= {arXiv preprint arXiv:1205.0404},
year = {2012}
}
Comments
5 pages, 8 figures, extended by data on the 4x4 cluster