Pairing Gap and In-Gap Excitations in Trapped Fermionic Superfluids
J. J. Kinnunen, M. Rodríguez, Päivi Törmä
Abstract
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J. J. Kinnunen, M. Rodríguez, Päivi Törmä
Abstract
Open-access reader
We consider trapped atomic Fermi gases with Feshbach-resonance enhanced interactions in pseudogap and superfluid temperatures. We calculate the spectrum of radio-frequency (or laser) excitations for transitions that transfer atoms out of the superfluid state. The spectrum displays the pairing gap and also the contribution of unpaired atoms, that is, in-gap excitations. The results support the conclusion that a superfluid, in which pairing is a manybody effect, was observed in recent experiments on radio-frequency spectroscopy of the pairing gap.
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We consider trapped atomic Fermi gases with Feshbach-resonance enhanced interactions in pseudogap and superfluid temperatures. We calculate the spectrum of radio-frequency (or laser) excitations for transitions that transfer atoms out of the superfluid state. The spectrum displays the pairing gap and also the contribution of unpaired atoms, that is, in-gap excitations. The results support the conclusion that a superfluid, in which pairing is a manybody effect, was observed in recent experiments on radio-frequency spectroscopy of the pairing gap.
Key concepts: Pairing, Superfluidity, Pseudogap, Feshbach resonance, Physics, Condensed matter physics, Atomic physics, Spectroscopy