Macroscopic self trapping in BECs: analysis of a dynamical quantum phase transition
Quantum Gases
2010-05-13 v2
Abstract
We consider a Bose-Einstein condensate in a double-well potential undergoing a dynamical transition from the regime of Josephson oscillations to the regime of self-trapping. We analyze the statistical properties of the ground state (or the highest excited state) of the Hamiltonian in these two regimes for attractive (repulsive) interactions. We demonstrate that it is impossible to describe the transition within the mean-field theory. In contrast, the transition proceeds through a strongly correlated delocalized state, with large quantum fluctuations, and spontaneous breaking of the symmetry.
Keywords
Cite
@article{arxiv.0912.1239,
title = {Macroscopic self trapping in BECs: analysis of a dynamical quantum phase transition},
author = {B. Julia-Diaz and D. Dagnino and M. Lewenstein and J. Martorell and A. Polls},
journal= {arXiv preprint arXiv:0912.1239},
year = {2010}
}
Comments
Fig 6c,d corrected. 7 pages, 10 eps figures