Publication | Open Access
Rapidly rotating Bose-Einstein condensates in anharmonic potentials
87
Citations
15
References
2003
Year
Quantum LiquidQuantum ScienceQuantum Lattice SystemEngineeringGiant VortexPhysicsVortex PhasesApplied PhysicsCondensed Matter PhysicsDisordered Quantum SystemBose-einstein CondensatesTopological PhaseBose-einstein CondensationGross-pitaevskii EquationVortex Lattice
Rapidly rotating Bose-Einstein condensates confined in anharmonic traps can exhibit a rich variety of vortex phases, including a vortex lattice, a vortex lattice with a hole, and a giant vortex. Using an augmented Thomas-Fermi variational approach to determine the ground state of the condensate in the rotating frame -- valid for sufficiently strongly interacting condensates -- we determine the transitions between these three phases for a quadratic-plus-quartic confining potential. Combining the present results with previous numerical simulations of small rotating condensates in such anharmonic potentials, we delineate the general structure of the zero temperature phase diagram.
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