Publication | Open Access
Collective modes of trapped Fermi gases with in-medium interaction
25
Citations
38
References
2009
Year
Quantum LiquidQuantum Lattice SystemEngineeringPhysicsMany-body Quantum PhysicNatural SciencesApplied PhysicsCondensed Matter PhysicsTrapped Fermi GasesAtomic PhysicsFree SpaceUltracold AtomLadder ApproximationQuantum ChemistryBose-einstein CondensationFermi GasMany-body Problem
Due to Pauli blocking of intermediate states, the scattering matrix (or $T$ matrix) of two fermionic atoms in a Fermi gas becomes different from that of two atoms in free space. This effect becomes particularly important near a Feshbach resonance, where the interaction in free space is very strong but becomes effectively suppressed in the medium. We calculate the in-medium $T$ matrix in ladder approximation and study its effects on the properties of collective modes of a trapped gas in the normal-fluid phase. We introduce the in-medium interaction on both sides of the Boltzmann equation, namely, in the calculation of the mean field and in the calculation of the collision rate. This allows us to explain the observed upward shift of the frequency of the quadrupole mode in the collisionless regime. By including the mean field, we also improve considerably the agreement with the measured temperature dependence of frequency and damping rate of the scissors mode, whereas the use of the in-medium cross section deteriorates the description, in agreement with previous work.
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