Trapped Two-Dimensional Fermi Gases with Population Imbalance
Other Condensed Matter
2011-12-26 v2 Quantum Gases
Statistical Mechanics
Abstract
We study population imbalanced Fermi mixtures under quasi-two-dimensional confinement at zero temperature. Using mean-field theory and the local-density approximation, we study the ground state configuration throughout the BEC-BCS crossover. We find the trapped system to be either fully normal or to consist of a superfluid core surrounded by a normal shell, which is itself either fully or partially polarized. Upon changing the trap imbalance, the trap configuration may undergo continuous transitions between the different ground states. Finally, we argue that thermal equilibration throughout the trap will be considerably slowed down at low temperatures when a superfluid phase is present.
Keywords
Cite
@article{arxiv.0911.0984,
title = {Trapped Two-Dimensional Fermi Gases with Population Imbalance},
author = {Bert Van Schaeybroeck and Achilleas Lazarides and Serghei Klimin and Jacques Tempere},
journal= {arXiv preprint arXiv:0911.0984},
year = {2011}
}
Comments
10 pages, 6 figures