Excited Bose–Einstein condensates: Quadrupole oscillations and dark solitons

Excited Bose–Einstein condensates: Quadrupole oscillations and dark solitons

0.00 Avg rating0 Votes
Article ID: iaor20122862
Volume: 82
Issue: 6
Start Page Number: 946
End Page Number: 957
Publication Date: Feb 2012
Journal: Mathematics and Computers in Simulation
Authors: , , , ,
Keywords: differential equations
Abstract:

We study the dynamics of atomic Bose–Einstein condensates (BECs), when the quadrupole mode is excited. Within the Thomas–Fermi approximation, we derive an exact first‐order system of differential equations that describes the parameters of the BEC wave function. Using perturbation theory arguments, we derive explicit analytical expressions for the phase, density and width of the condensate. Furthermore, it is found that the observed oscillatory dynamics of the BEC density can even reach a quasi‐resonance state when the trap strength varies according to a time‐periodic driving term. Finally, the dynamics of a dark soliton on top of a breathing BEC are also briefly discussed.

Reviews

Required fields are marked *. Your email address will not be published.