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Perturbative hydrodynamic Gross-Pitaevskii treatment for Bose-Einstein condensate in infinite length ring with disorder

https://doi.org/10.17586/2220-8054-2015-6-2-213-215

Abstract

For the derivation of the dilute Bose–Einstein condensate density and its phase, we have developed the perturbative approach for the solution of the stationary state couple Gross–Pitaevskii hydrodynamic equations. The external disorder potential is considered as a small parameter in this approach. We have derived expressions for the total density, condensate density, condensate density depletion and superfluid velocity of the Bose–Einstein condensate in an infinite length ring with disorder potential having a general form. For the delta correlated disorder, the explicit analytical forms of these quantities (except the superfluid velocity) have been obtained.

About the Authors

D. B. Abdullaev
National University of Uzbekistan
Uzbekistan

Institute of Applied Physics

Tashkent 100174



B. Abdullaev
National University of Uzbekistan
Uzbekistan

Institute of Applied Physics

Tashkent 100174



M. M. Musakhanov
National University of Uzbekistan
Uzbekistan

Tashkent 100174



References

1. E. M. Lifshitz and L. P. Pitaevskii. Statistical Physics, Part 2: Theory of Condensed State, Course of Theoretical Physics, V. 9, Elsevier Ltd., Amsterdam 1980, 387 p.

2. L. Pitaevskii and S. Stringari, Bose–Einstein Condensation, Oxford University Press, Oxford, 2003, 492 p.

3. L. Dalfovo, S. Giorgini, L. P. Pitaevskii, and S. Stringari. Theory of Bose–Einstein condensation in trapped gases. Rev. Mod. Phys., 71, P. 463 –512 (1999).

4. C. Krumnow and A. Pelster. Dipolar Bose–Einstein condensates with weak disorder. Phys. Rev. A, 84, P. 021608(R) (2011).


Review

For citations:


Abdullaev D.B., Abdullaev B., Musakhanov M.M. Perturbative hydrodynamic Gross-Pitaevskii treatment for Bose-Einstein condensate in infinite length ring with disorder. Nanosystems: Physics, Chemistry, Mathematics. 2015;6(2):213-215. https://doi.org/10.17586/2220-8054-2015-6-2-213-215

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ISSN 2220-8054 (Print)
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