Condensation of pairs of fermionic atoms near a Feshbach resonance

We have observed Bose-Einstein condensation of pairs of fermionic atoms in an ultracold 6Li gas at magnetic fields above a Feshbach resonance, where no stable 6Li2 molecules would exist in vacuum. We accurately determined the position of the resonance to be 822+/-3 G. Molecular Bose-Einstein condens...

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Veröffentlicht in:Physical review letters 2004-03, Vol.92 (12), p.120403-120403, Article 120403
Hauptverfasser: Zwierlein, M W, Stan, C A, Schunck, C H, Raupach, S M F, Kerman, A J, Ketterle, W
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Sprache:eng
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Zusammenfassung:We have observed Bose-Einstein condensation of pairs of fermionic atoms in an ultracold 6Li gas at magnetic fields above a Feshbach resonance, where no stable 6Li2 molecules would exist in vacuum. We accurately determined the position of the resonance to be 822+/-3 G. Molecular Bose-Einstein condensates were detected after a fast magnetic field ramp, which transferred pairs of atoms at close distances into bound molecules. Condensate fractions as high as 80% were obtained. The large condensate fractions are interpreted in terms of preexisting molecules which are quasistable even above the two-body Feshbach resonance due to the presence of the degenerate Fermi gas.
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.92.120403