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Emergence of superfluid transport in a dynamical system of ultracold atoms

Joachim Brand, Andrey R. Kolovsky

cond-mat.otherarXiv:cond-mat/0412549

Abstract

The dynamics of a Bose-Einstein condensate is studied theoretically in a combined periodic plus harmonic external potential. Different dynamical regimes of stable and unstable collective dipole and Bloch oscillations are analysed in terms of a quantum mechanical pendulum model. Nonlinear interactions are shown to counteract quantum-mechanical dephasing and lead to phase-coherent, superfluid transport.

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