Publication | Open Access
Numerical solution of the Boltzmann equation for the collective modes of trapped Fermi gases
34
Citations
28
References
2010
Year
Numerical AnalysisResponse FunctionEngineeringNumerical SolutionTrapped FermionsRarefied FlowGas DynamicNumerical SimulationThermodynamicsBoltzmann EquationPhysicsBose-einstein CondensationMultiscale ModelingNumerical Method For Partial Differential EquationNatural SciencesApplied PhysicsCondensed Matter PhysicsTrapped Fermi GasesMany-body Problem
We numerically solve the Boltzmann equation for trapped fermions in the normal phase by using the test-particle method. After discussing a couple of tests in order to estimate the reliability of the method, we apply it to the description of collective modes in a spherical harmonic trap. The numerical results are compared with those obtained previously by taking moments of the Boltzmann equation. We find that the general shape of the response function is very similar in both methods, but the relaxation time obtained from the simulation is significantly longer than that predicted by the method of moments. It is shown that the result of the method of moments can be corrected by including fourth-order moments in addition to the usual second-order ones and that this method agrees very well with our numerical simulations.
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