Superfluidity and Density Order in a Bilayer Extended Hubbard Model
Quantum Gases
2016-04-21 v2
Abstract
We use cluster dynamical mean field theory to study the phase diagram of the square lattice bilayer Hubbard model with an interlayer interaction. The layers are populated by two-component fermions, and the densities in both layers and the strength of the interactions are varied. We find that an attractive interlayer interaction can induce a checkerboard density ordered phase and superfluid phases, with either interlayer or intralayer pairing. Remarkably, the latter phase does not require an intralayer interaction to be present: it can be attributed to an induced attractive interaction caused by density fluctuations in the other layer.
Cite
@article{arxiv.1411.3541,
title = {Superfluidity and Density Order in a Bilayer Extended Hubbard Model},
author = {Tuomas I. Vanhala and Jildou E. Baarsma and Miikka O. J. Heikkinen and Matthias Troyer and Ari Harju and Päivi Törmä},
journal= {arXiv preprint arXiv:1411.3541},
year = {2016}
}
Comments
The published version