Phase diagram of two-component dipolar fermions in one-dimensional optical lattices
Quantum Gases
2013-02-25 v3
Abstract
We theoretically map out the ground state phase diagram of interacting dipolar fermions in one-dimensional lattice. Using a bosonization theory in the weak coupling limit at half filing, we show that one can construct a rich phase diagram by changing the angle between the lattice orientation and the polarization direction of the dipoles. In the strong coupling limit, at a general filing factor, we employ a variational approach and find that the emergence of a Wigner crystal phases. The structure factor provides clear signatures of the particle ordering in the Wigner crystal phases.
Keywords
Cite
@article{arxiv.1206.0191,
title = {Phase diagram of two-component dipolar fermions in one-dimensional optical lattices},
author = {Theja N. De Silva},
journal= {arXiv preprint arXiv:1206.0191},
year = {2013}
}
Comments
Published Version (Physics Letters A)