d_{xy}-Density wave in fermion-fermion cold atom mixtures
Abstract
We study density wave instabilities in a doubly-degenerate Fermi-Fermi mixture with symmetry on a square lattice. For sufficiently large on-site inter-species repulsion, when the two species of fermions are both at half-filling, two conventional (-wave) number density waves are formed with a -phase difference between them to minimize the inter-species repulsion. Upon moving one species away from half-filling, an unconventional density wave with -wave symmetry emerges. When both species are away from the vicinity of half-filling, superconducting instabilities dominate. We present results of a functional renormalization-group calculation that maps out the phase diagram at weak couplings. Also, we provide a simple explanation for the emergence of the -density wave phase based on a four-patch model. We find a robust and general mechanism for -density-wave formation that is related to the shape and size of the Fermi surfaces. The density imbalance between the two species of fermions in the vicinity of half-filling leads to phase-space discrepancy for different inter-species Umklapp couplings. Using a phase space argument for leading corrections in the one-loop renormalization group approach to fermions, we show that the phase-space discrepancy in our system causes opposite flows for the two leading intra-species Umklapp couplings and that this triggers the -density-wave instability.
Cite
@article{arxiv.1307.2242,
title = {d_{xy}-Density wave in fermion-fermion cold atom mixtures},
author = {Chen-Yen Lai and Wen-Min Huang and David K. Campbell and Shan-Wen Tsai},
journal= {arXiv preprint arXiv:1307.2242},
year = {2014}
}
Comments
revised long version; 8 pages, 7 figures