English

Universal Properties of the Ultra-Cold Fermi Gas

Strongly Correlated Electrons 2009-11-13 v1

Abstract

We present some general considerations on the properties of a two-component ultra-cold Fermi gas along the BEC-BCS crossover. It is shown that the interaction energy and the ground state energy can be written in terms of a single dimensionless function h(ξ,τ)h({\xi,\tau}), where ξ=(kFas)1\xi=-(k_Fa_s)^{-1} and τ=T/TF\tau=T/T_F. The function h(ξ,τ)h(\xi,\tau) incorporates all the many-body physics and naturally occurs in other physical quantities as well. In particular, we show that the RF-spectroscopy shift \d\oˉ(ξ,τ)\bar{\d\o}(\xi,\tau) and the molecular fraction fc(ξ,τ)f_c(\xi,\tau) in the closed channel can be expressed in terms of h(ξ,τ)h(\xi,\tau) and thus have identical temperature dependence. The conclusions should have testable consequences in future experiments.

Keywords

Cite

@article{arxiv.0809.1892,
  title  = {Universal Properties of the Ultra-Cold Fermi Gas},
  author = {Shizhong Zhang and Anthony J. Leggett},
  journal= {arXiv preprint arXiv:0809.1892},
  year   = {2009}
}