Three-body contact for fermions. II. Non-degenerate limit
Xavier Leyronas, Félix Werner
Abstract
A fundamental quantity characterizing Fermi gases with zero-range interactions is the three-body contact C3, which determines several observables including the number of nearby triplets of fermions and the three-body loss rate in cold atom experiments, as shown in a companion article. Here, we compute C3 to leading order in the non-degenerate limit for the homogeneous gas with negative or infinite scattering length a. At a=∞, using a wavefunction approach, we obtain the analytical expression of C3, which has a remarkably slow 1/T0.22728 dependence on the temperature T. In the Feynman diagram technique, which we use for a<0, the correct three-body short-distance correlations emerge only after a non-trivial cancellation between leading order two-body and three-body correlations, and the resulting power-law scaling comes from the large-wavevector tail of the 3-body T-matrix, which we derive inspired by the analytical solution of the three-body problem at the unitary limit.
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