Bogolubov–Hartree–Fock Theory for Strongly Interacting Fermions in the Low Density Limit

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Abstract

We consider the Bogolubov–Hartree–Fock functional for a fermionic many-body system with two-body interactions. For suitable interaction potentials that have a strong enough attractive tail in order to allow for two-body bound states, but are otherwise sufficiently repulsive to guarantee stability of the system, we show that in the low-density limit the ground state of this model consists of a Bose–Einstein condensate of fermion pairs. The latter can be described by means of the Gross–Pitaevskii energy functional.

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Bräunlich, G., Hainzl, C., & Seiringer, R. (2016). Bogolubov–Hartree–Fock Theory for Strongly Interacting Fermions in the Low Density Limit. Mathematical Physics Analysis and Geometry, 19(2). https://doi.org/10.1007/s11040-016-9209-x

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