Bright solitary waves of trapped atomic Bose-Einstein condensates
Abstract
Motivated by recent experimental observations, we study theoretically multiple bright solitary waves of trapped Bose-Einstein condensates. Through variational and numerical analyses, we determine the threshold for collapse of these states. Under -phase differences between adjacent waves, we show that the experimental states lie consistently at the threshold for collapse, where the corresponding in-phase states are highly unstable. Following the observation of two long-lived solitary waves in a trap, we perform detailed three-dimensional simulations which confirm that in-phase waves undergo collapse while a -phase difference preserves the long-lived dynamics and gives excellent quantitative agreement with experiment. Furthermore, intermediate phase differences lead to the growth of population asymmetries between the waves, which ultimately triggers collapse.
Cite
@article{arxiv.0802.4275,
title = {Bright solitary waves of trapped atomic Bose-Einstein condensates},
author = {N. G. Parker and A. M. Martin and C. S. Adams and S. L. Cornish},
journal= {arXiv preprint arXiv:0802.4275},
year = {2009}
}
Comments
8 pages, 5 figures (low quality)