English

Low-Dimensional Stochastic Projected Gross-Pitaevskii Equation

Quantum Gases 2015-10-07 v2 Statistical Mechanics Atomic Physics Quantum Physics

Abstract

We present reduced-dimensional stochastic projected Gross-Pitaevskii equations describing regimes of confinement and temperature where a 1D or 2D superfluid is immersed in a 3D thermal cloud. The projection formalism provides both a formally rigorous and physically natural way to effect the dimensional reduction. The 3D form of the number-damping (growth) terms is unchanged by the dimensional reduction. Projection of the energy-damping (scattering) terms leads to modified stochastic equations of motion describing energy exchange with the thermal reservoir. The regime of validity of the dimensional reduction is investigated via variational analysis. Paying particular attention to 1D, we validate our variational treatment by comparing numerical simulations of a trapped oblate system in 3D with the 1D theory, and establish a consistent choice of cutoff for the 1D theory. We briefly discuss the scenario involving two-components with different degeneracy, suggesting that a wider regime of validity exists for systems in contact with a buffer-gas reservoir.

Keywords

Cite

@article{arxiv.1507.02023,
  title  = {Low-Dimensional Stochastic Projected Gross-Pitaevskii Equation},
  author = {A. S. Bradley and S. J. Rooney and R. G. McDonald},
  journal= {arXiv preprint arXiv:1507.02023},
  year   = {2015}
}

Comments

13 pages, 6 figures

R2 v1 2026-06-22T10:07:44.396Z