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Article
Dynamics of Vortex Dipoles in Confined Bose-Einstein Condensates
Physics Letters A (2011)
  • P. J. Torres
  • Panos Kevrekidis
  • D. J. Frantzeskakis
  • R. Carretero-Gonzalez
  • P. Schmelcher
  • D. S. Hall
Abstract
We present a systematic theoretical analysis of the motion of a pair of straight counter-rotating vortex lines within a trapped Bose-Einstein condensate. We introduce the dynamical equations of motion, identify the associated conserved quantities, and illustrate the integrability of the ensuing dynamics. The system possesses a stationary equilibrium as a special case in a class of exact solutions that consist of rotating guiding-center equilibria about which the vortex lines execute periodic motion; thus, the generic two-vortex motion can be classified as quasi-periodic. We conclude with an analysis of the linear and nonlinear stability of these stationary and rotating equilibria.
Disciplines
Publication Date
August, 2011
Publisher Statement

DOI:10.1016/j.physleta.2011.06.061

This is the pre-published version harvested from arXiv. The published version is located at http://www.sciencedirect.com/science/article/pii/S0375960111008048
Citation Information
P. J. Torres, Panos Kevrekidis, D. J. Frantzeskakis, R. Carretero-Gonzalez, et al.. "Dynamics of Vortex Dipoles in Confined Bose-Einstein Condensates" Physics Letters A Vol. 375 Iss. 33 (2011)
Available at: http://works.bepress.com/panos_kevrekidis/227/