Modulational instability criteria for two-component Bose–Einstein condensates
The stability of colliding Bose-Einstein condensates is investigated. A set of coupled Gross-Pitaevskii equations is thus considered, and analyzed via a perturbative approach. No assumption is made on the signs (or magnitudes) of the relevant parameters like the scattering lengths and the coupling coefficients. The formalism is therefore valid for asymmetric as well as symmetric coupled condensate wave states. A new set of explicit criteria is derived and analyzed. An extended instability region, in addition to an enhanced instability growth rate, is predicted for unstable two component bosons, as compared to the individual (uncoupled) state. Copyright EDP Sciences/Società Italiana di Fisica/Springer-Verlag 2005
Year of publication: |
2005
|
---|---|
Authors: | Kourakis, I. ; Shukla, P. K. ; Marklund, M. ; Stenflo, L. |
Published in: |
The European Physical Journal B - Condensed Matter and Complex Systems. - Springer. - Vol. 46.2005, 3, p. 381-384
|
Publisher: |
Springer |
Saved in:
Online Resource
Saved in favorites
Similar items by person
-
Random phases in Bose-Einstein condensates with higher order nonlinearities
Marklund, M., (2005)
-
Modulational instability in asymmetric coupled wave functions
Kourakis, I., (2006)
-
Fractality feature in oil price fluctuations
Momeni, M., (2008)
- More ...