English

Robust Vortex Lines, Vortex Rings and Hopfions in 3D Bose-Einstein Condensates

Quantum Gases 2016-01-19 v1 Pattern Formation and Solitons

Abstract

Performing a systematic Bogoliubov-de Gennes spectral analysis, we illustrate that stationary vortex lines, vortex rings and more exotic states, such as hopfions, are robust in three-dimensional atomic Bose-Einstein condensates, for large parameter intervals. Importantly, we find that the hopfion can be stabilized in a simple parabolic trap, without the need for trap rotation or inhomogeneous interactions. We supplement our spectral analysis by studying the dynamics of such stationary states; we find them to be robust against significant perturbations of the initial state. In the unstable regimes, we not only identify the unstable mode, such as a quadrupolar or hexapolar mode, but we also observe the corresponding instability dynamics. Furthermore, deep in the Thomas-Fermi regime, we investigate the particle-like behavior of vortex rings and hopfions.

Keywords

Cite

@article{arxiv.1510.04344,
  title  = {Robust Vortex Lines, Vortex Rings and Hopfions in 3D Bose-Einstein Condensates},
  author = {R. N. Bisset and Wenlong Wang and C. Ticknor and R. Carretero-Gonzalez and D. J. Frantzeskakis and L. A. Collins and P. G. Kevrekidis},
  journal= {arXiv preprint arXiv:1510.04344},
  year   = {2016}
}

Comments

7 pages, 7 figures