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Universal properties of a trapped two-component Fermi gas at unitarity

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arxiv 0708.2734 v2 pith:YTEGQACN submitted 2007-08-21 cond-mat.other

Universal properties of a trapped two-component Fermi gas at unitarity

classification cond-mat.other
keywords bounduniversalexcitationfermifermionspotentialpredictionsproperties
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We treat the trapped two-component Fermi system, in which unlike fermions interact through a two-body short-range potential having no bound state but an infinite scattering length. By accurately solving the Schroedinger equation for up to N=6 fermions, we show that no many-body bound states exist other than those bound by the trapping potential, and we demonstrate unique universal properties of the system: Certain excitation frequencies are separated by $2\hbar\omega$, the wavefunctions agree with analytical predictions and a virial theorem is fulfilled. Further calculations up to N=30 determine the excitation gap, an experimentally accessible universal quantity, and it agrees with recent predictions based on a density functional approach.

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