Coupled Dipole Oscillations of a Mass-Imbalanced Bose and Fermi Superfluid Mixture
arXiv:1705.04496 · doi:10.1103/PhysRevB.97.020506
Abstract
Recent experimental realizations of superfluid mixtures of Bose and Fermi quantum gases provide a unique platform for exploring diverse superfluid phenomena. We study dipole oscillations of a double superfluid in a cigar-shaped optical dipole trap, consisting of K and Li atoms with a large mass imbalance, where the oscillations of the bosonic and fermionic components are coupled via the Bose-Fermi interaction. In our high-precision measurements, the frequencies of both components are observed to be shifted from the single-species ones, and exhibit unusual features. The frequency shifts of the K component are upward (downward) in the radial (axial) direction, whereas the Li component has down-shifted frequencies in both directions. Most strikingly, as the interaction strength is varied, the frequency shifts display a resonant-like behavior in both directions, for both species, and around a similar location at the BCS side of fermionic superfluid. These rich phenomena challenge theoretical understanding of superfluids.
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- Breathing Mode of a BEC Repulsively Interacting with a Fermionic Reservoir
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- Collective flow of fermionic impurities immersed in a Bose-Einstein Condensate
- Collective dynamics of Fermi-Bose mixtures with an oscillating scattering length
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