Physics – Condensed Matter
Scientific paper
1999-11-02
Physics
Condensed Matter
10 pages revtex, 3 figures in postscript
Scientific paper
10.1103/PhysRevA.61.043606
We present predictions for the temperature dependent shifts and damping rates. They are obtained by applying the dielectric formalism to a simple model of a trapped Bose gas. Within the framework of the model we use lowest order perturbation theory to determine the first order correction to the results of Hartree-Fock-Bogoliubov-Popov theory for the complex collective excitation frequencies, and present numerical results for the temperature dependence of the damping rates and the frequency shifts. Good agreement with the experimental values measured at JILA are found for the m=2 mode, while we find disagreements in the shifts for m=0. The latter point to the necessity of a non-perturbative treatment for an explanation of the temperature-dependence of the m=0 shifts.
Csord'as Andr'as
Graham Ron
Reidl Jürgen
Sz'epfalusy P'eter
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