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arxiv: 1208.4421 · v2 · pith:GNHFUBKJnew · submitted 2012-08-22 · ❄️ cond-mat.quant-gas

Persistent current formation in a high-temperature Bose-Einstein condensate: an experimental test for c-field theory

classification ❄️ cond-mat.quant-gas
keywords currentexperimentalpersistentbose-einsteincondensateformationhigh-temperatureparameters
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Experimental stirring of a toroidally trapped Bose-Einstein condensate at high temperature generates a disordered array of quantum vortices that decays via thermal dissipation to form a macroscopic persistent current [T. W. Neely em et al. arXiv:1204.1102 (2012)]. We perform 3D numerical simulations of the experimental sequence within the Stochastic Projected Gross-Pitaevskii equation using ab initio determined reservoir parameters. We find that both damping and noise are essential for describing the dynamics of the high-temperature Bose field. The theory gives a quantitative account of the formation of a persistent current, with no fitted parameters.

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