On the Bifurcation and Stability of Single and Multiple Vortex Rings in Three-Dimensional Bose-Einstein Condensates
arXiv:1507.07606 · doi:10.1103/PhysRevA.92.043601
Abstract
In the present work, we investigate how single- and multi-vortex-ring states can emerge from a planar dark soliton in three-dimensional (3D) Bose-Einstein condensates (confined in isotropic or anisotropic traps) through bifurcations. We characterize such bifurcations quantitatively using a Galerkin-type approach, and find good qualitative and quantitative agreement with our Bogoliubov-de Gennes (BdG) analysis. We also systematically characterize the BdG spectrum of the dark solitons, using perturbation theory, and obtain a quantitative match with our 3D BdG numerical calculations. We then turn our attention to the emergence of single- and multi-vortex-ring states. We systematically capture these as stationary states of the system and quantify their BdG spectra numerically. We find that although the vortex ring may be unstable when bifurcating, its instabilities weaken and may even eventually disappear, for sufficiently large chemical potentials and suitable trap settings. For instance, we demonstrate the stability of the vortex ring for an isotropic trap in the large chemical potential regime.
14 pages, 9 figures
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Cited by in corpus (14)
- Dark spherical shell solitons in three-dimensional Bose-Einstein condensates: Existence, stability and dynamics
- Computing stationary solutions of the two-dimensional Gross-Pitaevskii equation with Deflated continuation
- Single and Multiple Vortex Rings in Three-Dimensional Bose-Einstein Condensates: Existence, Stability and Dynamics
- Ring dark solitons in three-dimensional Bose-Einstein condensates
- Robust Vortex Lines, Vortex Rings and Hopfions in 3D Bose-Einstein Condensates
- Instabilities of vortex-ring-bright soliton in trapped binary 3D Bose-Einstein condensates
- Spectral and dynamical analysis of a single vortex ring in anisotropic harmonically trapped three-dimensional Bose-Einstein condensates
- Excitations of a vortex line in an elongated dipolar condensate
- On Two-Component Dark-Bright Solitons in Three-dimensional Atomic Bose-Einstein Condensates
- Symmetry-breaking instability of leapfrogging vortex rings in a Bose-Einstein condensate
- Vortex lines attached to dark solitons in Bose-Einstein condensates and Boson-Vortex Duality in 3+1 Dimensions
- Nonlinearity and Topology
- Classical and quantum vortex leapfrogging in two-dimensional channels
- A Hamiltonian Bifurcation Perspective on Two Interacting Vortex Pairs: From Symmetric to Asymmetric Leapfrogging, Period Doubling and Chaos