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Exact solutions and stability of rotating dipolar...
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Exact solutions and stability of rotating dipolar Bose-Einstein condensates in the Thomas-Fermi limit

Abstract

We present a theoretical analysis of dilute gas Bose-Einstein condensates with dipolar atomic interactions under rotation in elliptical traps. Working in the Thomas-Fermi limit, we employ the classical hydrodynamic equations to first derive the rotating condensate solutions and then consider their response to perturbations. We thereby map out the regimes of stability and instability for rotating dipolar Bose-Einstein condensates and in the latter case, discuss the possibility of vortex lattice formation. We employ our results to propose several novel routes to induce vortex lattice formation in a dipolar condensate.

Authors

van Bijnen RMW; Dow AJ; O'Dell DHJ; Parker NG; Martin AM

Publication date

May 10, 2009

DOI

10.48550/arxiv.0905.1515

Preprint server

arXiv
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