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Ground-State Energy of a Dilute Fermi Gas

Abstract

Recent developments in the physics of low density trapped gases make it worthwhile to verify old, well known results that, while plausible, were based on perturbation theory and assumptions about pseudopotentials. We use and extend recently developed techniques to give a rigorous derivation of the asymptotic formula for the ground state energy of a dilute gas of NN fermions interacting with a short-range, positive potential of scattering length aa. For spin 1/2 fermions, this is EE0+(2/2m)2πNρaE \sim E^0 + (\hbar^2/2m) 2 \pi N \rho a, where E0E^0 is the energy of the non-interacting system and ρ\rho is the density.Comment: Contribution to the proceedings of the 2005 International Conference on Differential Equations and Mathematical Physics, University of Alabama, Birmingha

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