Cooper pairing above the critical temperature in a unitary Fermi gas

We present an ab initio determination of the spin response of the unitary Fermi gas. Based on finite temperature quantum Monte Carlo calculations and the Kubo linear-response formalism, we determine the temperature dependence of the spin susceptibility and the spin conductivity. We show that both qu...

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Veröffentlicht in:Physical review letters 2013-02, Vol.110 (9), p.090401-090401, Article 090401
Hauptverfasser: Wlazłowski, Gabriel, Magierski, Piotr, Drut, Joaquín E, Bulgac, Aurel, Roche, Kenneth J
Format: Artikel
Sprache:eng
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Zusammenfassung:We present an ab initio determination of the spin response of the unitary Fermi gas. Based on finite temperature quantum Monte Carlo calculations and the Kubo linear-response formalism, we determine the temperature dependence of the spin susceptibility and the spin conductivity. We show that both quantities exhibit suppression above the critical temperature of the superfluid-to-normal phase transition due to Cooper pairing. The spin diffusion transport coefficient does not display a minimum in the vicinity of the critical temperature and drops to very low values D(s)≈0.8ħ/m in the superfluid phase. All these spin observables show a smooth and monotonic behavior with temperature when crossing the critical temperature T(c), until the Fermi liquid regime is attained at the temperature T(*), above which the pseudogap regime disappears.
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.110.090401