Quantum dynamics of three coupled atomic Bose-Einstein condensates
| Data(s) |
01/12/2001
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|---|---|
| Resumo |
The simplest model of three coupled Bose-Einstein condensates is investigated using a group theoretical method. The stationary solutions are determined using the SU(3) group under the mean-field approximation. This semiclassical analysis, using system symmetries, shows a transition in the dynamics of the system from self trapping to delocalization at a critical value for the coupling between the condensates. The global dynamics are investigated by examination of the stable points, and our analysis shows that the structure of the stable points depends on the ratio of the condensate coupling to the particle-particle interaction, and undergoes bifurcations as this ratio is varied. This semiclassical model is compared to a full quantum treatment, which also displays a dynamical transition. The quantum case has collapse and revival sequences superimposed on the semiclassical dynamics, reflecting the underlying discreteness of the spectrum. Nonzero circular current states are also demonstrated as one of the higher-dimensional effects displayed in this system. |
| Identificador |
http://espace.library.uq.edu.au/view/UQ:13325/UQ13325_OA.pdf |
| Idioma(s) |
eng |
| Publicador |
American Physical Society |
| Palavras-Chave | #quantum optics #atom optics #mathematical physics #Bose-Einstein condensates |
| Tipo |
Journal Article |