English

Condensation dynamics in a quantum-quenched Bose gas

Quantum Gases 2012-09-10 v3 Statistical Mechanics Atomic Physics Quantum Physics

Abstract

By quenching the strength of interactions in a partially condensed Bose gas we create a "super-saturated" vapor which has more thermal atoms than it can contain in equilibrium. Subsequently, the number of condensed atoms (N0N_0) grows even though the temperature (TT) rises and the total atom number decays. We show that the non-equilibrium evolution of the system is isoenergetic and for small initial N0N_0 observe a clear separation between TT and N0N_0 dynamics, thus explicitly demonstrating the theoretically expected "two-step" picture of condensate growth. For increasing initial N0N_0 values we observe a crossover to classical relaxation dynamics. The size of the observed quench-induced effects can be explained using a simple equation of state for an interacting harmonically-trapped atomic gas.

Keywords

Cite

@article{arxiv.1112.4457,
  title  = {Condensation dynamics in a quantum-quenched Bose gas},
  author = {Robert P. Smith and Scott Beattie and Stuart Moulder and Robert L. D. Campbell and Zoran Hadzibabic},
  journal= {arXiv preprint arXiv:1112.4457},
  year   = {2012}
}

Comments

4 pages, 4 figures

R2 v1 2026-06-21T19:53:58.699Z