Topological defect dynamics of vortex lattices in Bose--Einstein condensates
Quantum Gases
2016-11-08 v2 Quantum Physics
Abstract
Vortex lattices in rapidly rotating Bose--Einstein condensates are systems of topological excitations that arrange themselves into periodic patterns. Here we show how phase-imprinting techniques can be used to create a controllable number of defects in these lattices and examine the resulting dynamics. Even though we describe our system using the mean-field Gross--Pitaevskii theory, the full range of many particle effects among the vortices can be studied. In particular we find the existence of localized vacancies that are quasi-stable over long periods of time, and characterize the effects on the background lattice through use of the orientational correlation function, and Delaunay triangulation.
Keywords
Cite
@article{arxiv.1608.07756,
title = {Topological defect dynamics of vortex lattices in Bose--Einstein condensates},
author = {Lee James O'Riordan and Thomas Busch},
journal= {arXiv preprint arXiv:1608.07756},
year = {2016}
}
Comments
8 pages, 12 figures