Wednesday, September 26, 2012

1209.5641 (Igor Boettcher et al.)

Tan contact and universal high momentum behavior of the fermion
propagator in the BCS-BEC crossover
   [PDF]

Igor Boettcher, Sebastian Diehl, Jan M. Pawlowski, Christof Wetterich
We derive the universal high momentum factorization of the fermion self-energy in the BCS-BEC crossover of ultracold atoms using nonperturbative quantum field theoretical methods. This property is then employed to compute the Tan contact as a function of interaction strength, temperature, chemical potential and Fermi momentum. We clarify the mechanism of the factorization from an analysis of the self-consistent Schwinger-Dyson equation for the fermion propagator, and compute the perturbative contact on the BCS and BEC sides within this framework. A Functional Renormalization Group approach is then put forward, which allows to determine the contact over the whole crossover and, in particular, for the Unitary Fermi gas. We present numerical results from an implementation of the Renormalization Group equations within a basic truncation scheme.
View original: http://arxiv.org/abs/1209.5641

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