Vortices in dipolar condensates with dominant dipolar interactions
Abstract
We present full three-dimensional numerical calculations of single vortex states in rotating dipolar condensates. We consider a Bose-Einstein condensate of 52Cr atoms with dipole-dipole and s-wave contact interactions confined in an axially symmetric harmonic trap. We obtain the vortex states by numerically solving the Gross-Pitaevskii equation in the rotating frame with no further approximations. We investigate the properties of a single vortex and calculate the critical angular velocity for different values of the s-wave scattering length. We show that, whereas the standard variational approach breaks down in the limit of pure dipolar interactions, exact solutions of the Gross-Pitaevskii equation can be obtained for values of the s-wave scattering length down to zero. The energy barrier for the nucleation of a vortex is calculated as a function of the vortex displacement from the rotation axis for different values of the angular velocity of the rotating trap.
Cite
@article{arxiv.0906.4259,
title = {Vortices in dipolar condensates with dominant dipolar interactions},
author = {M. Abad and M. Guilleumas and R. Mayol and M. Pi and D. M. Jezek},
journal= {arXiv preprint arXiv:0906.4259},
year = {2009}
}
Comments
10 pages with 9 figures