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Damping of the quadrupole mode in a two-dimensional Fermi gas

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arxiv 1309.3651 v2 pith:WXBCRCXF submitted 2013-09-14 cond-mat.quant-gas

classification cond-mat.quant-gas
keywords quadrupoledampingfermimodemodestwo-dimensionalanalysisboltzmann
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In a recent experiment [E. Vogt et al., Phys. Rev. Lett. 108, 070404 (2012)], quadrupole and breathing modes of a two-dimensional Fermi gas were studied. We model these collective modes by solving the Boltzmann equation via the method of phase-space moments up to fourth order, including in-medium effects on the scattering cross section. In our analysis, we use a realistic Gaussian potential deformed by the presence of gravity and magnetic field gradients. We conclude that the origin of the experimentally observed damping of the quadrupole mode, especially in the weakly interacting (or even non-interacting) case, cannot be explained by these mechanisms.

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