Thermodynamic equivalence of two-dimensional imperfect attractive Fermi and repulsive Bose gases
arXiv:1705.09511 · doi:10.1103/PhysRevA.95.063627
Abstract
We consider two-dimensional imperfect attractive Fermi and repulsive Bose gases consisting of spinless point particles whose total interparticle interaction energy is represented by with for fermions, and for bosons. We show that in spite of the attraction the thermodynamics of imperfect Fermi gas remains well defined for , and is exactly the same as the one of the repulsive imperfect Bose gas with . In particular, for one observes the thermodynamic equivalence of the attractive imperfect Fermi gas and the ideal Bose gas.
5 pages, 1 figure
References in corpus (9)
- Many-Body Physics with Ultracold Gases
- Radiofrequency spectroscopy of a strongly interacting two-dimensional Fermi gas
- Observation of the Berezinskii-Kosterlitz-Thouless Phase Transition in an Ultracold Fermi Gas
- Observation of pair condensation in the quasi-2D BEC-BCS crossover
- Crossover from 2D to 3D in a weakly interacting Fermi gas
- Precise determination of the structure factor and contact in a unitary Fermi gas
- Spin-Imbalanced Quasi-Two-Dimensional Fermi Gases
- Effective-Range Dependence of Resonantly Interacting Fermions
- Predicting Energies of Small Clusters from the Inhomogeneous Unitary Fermi Gas