Universal equation of state and pseudogap in the two-dimensional Fermi gas

Journal Article (2014)
Author(s)

Marianne Bauer (Cavendish Laboratory)

Meera M. Parish (London Centre for Nanotechnology)

Tilman Enss (Institut für Theoretische Physik Heidelberg)

Affiliation
External organisation
DOI related publication
https://doi.org/10.1103/PhysRevLett.112.135302
More Info
expand_more
Publication Year
2014
Language
English
Affiliation
External organisation
Issue number
13
Volume number
112

Abstract

We determine the thermodynamic properties and the spectral function for a homogeneous two-dimensional Fermi gas in the normal state using the Luttinger-Ward, or self-consistent T-matrix, approach. The density equation of state deviates strongly from that of the ideal Fermi gas even for moderate interactions, and our calculations suggest that temperature has a pronounced effect on the pressure in the crossover from weak to strong coupling, consistent with recent experiments. We also compute the superfluid transition temperature for a finite system in the crossover region. There is a pronounced pseudogap regime above the transition temperature: the spectral function shows a Bogoliubov-like dispersion with backbending, and the density of states is significantly suppressed near the chemical potential. The contact density at low temperatures increases with interaction and compares well with both experiment and zero-temperature Monte Carlo results.

No files available

Metadata only record. There are no files for this record.