Stability of superfluid Fermi gases in optical lattices
Abstract
Critical velocities of superfluid Fermi gases in optical lattices are theoretically investigated across the BCS-BEC crossover. We calculate the excitation spectra in the presence of a superfluid flow in one- and two-dimensional optical lattices. It is found that the spectrum of low-lying Anderson-Bogoliubov (AB) mode exhibits a roton-like structure in the short-wavelength region due to the strong charge density wave fluctuations, and with increasing the superfluid velocity one of the roton-like minima reaches zero before the single-particle spectrum does. This means that superfluid Fermi gases in optical lattices are destabilized due to spontaneous emission of the roton-like AB mode instead of due to Cooper pair breaking.
Keywords
Cite
@article{arxiv.0809.0350,
title = {Stability of superfluid Fermi gases in optical lattices},
author = {Yoshihiro Yunomae and Ippei Danshita and Daisuke Yamamoto and Nobuhiko Yokoshi and Shunji Tsuchiya},
journal= {arXiv preprint arXiv:0809.0350},
year = {2009}
}
Comments
4 pages, 4 figures, conference proceeding for ISQM-TOKYO'08