arXiv · cond-mat/0212604
Phase dynamics after connection of two separate Bose-Einstein condensates
Abstract
We study the dynamics of the relative phase following the connection of two independently formed Bose-Einstein condensates. Dissipation is assumed to be due to the creation of quasiparticles induced by a fluctuating condensate particle number. The coherence between different values of the phase, which is characteristic of the initial Fock state, is quickly lost after the net exchange of a few atoms has taken place. This process effectively measures the phase and marks the onset of a semiclassical regime in which the system undergoes Bloch oscillations around the initial particle number. These fast oscillations excite quasiparticles within each condensate and the system relaxes at a longer time scale until it displays low-energy, damped Josephson plasma oscillations, eventually coming to a halt when the equilibrium configuration is finally reached.
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I. Zapata, F. Sols, A. J. Leggett. 2002-12-26. Phase dynamics after connection of two separate Bose-Einstein condensates. https://doi.org/10.1103/physreva.67.021603
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