arXiv · 1109.2464
Density instabilities in a two-dimensional dipolar Fermi gas
Abstract
We study the density instabilities of a two-dimensional gas of dipolar fermions with aligned dipole moments. We show that the Random Phase Approximation (RPA) for the density-density response function is never accurate for the dipolar gas. We incorporate correlations beyond RPA via an improved version of the Singwi-Tosi-Land-Sjolander scheme. In addition to density-wave instabilities, our formalism captures the collapse instability that is expected from Hartree-Fock calculations but is absent from RPA. Crucially, we find that when the dipoles are perpendicular to the layer, the system spontaneously breaks rotational symmetry and forms a stripe phase, in defiance of conventional wisdom.
Explore related subjects
Keep this discovery
Meera M. Parish, Francesca M. Marchetti. 2011-09-12. Density instabilities in a two-dimensional dipolar Fermi gas. https://doi.org/10.1103/physrevlett.108.145304
Cite the original work for its findings. Save a collection to share your selection of sources.