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Nucleation, Growth, and Stabilization of Bose-Einstein Condensate Vortex Lattices

A. A. PenckwittDepartment of Physics, University of Otago, Dunedin, New ZealandR. J. BallaghDepartment of Physics, University of Otago, Dunedin, New ZealandC. W. GardinerDepartment of Physics, University of Otago, Dunedin, New Zealand
2002en
ABI

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We give a simple unified theory of vortex nucleation and vortex lattice formation in which (i) the thermal cloud plays a crucial role; (ii) the basic process is due to growth of the condensate from a rotating thermal cloud, which provides gain for certain surface modes of nonzero angular momentum; (iii) vortices appear initially as the result of a linear interference between the far fields of the condensate and the surface modes; and (iv) the description applies from the initiation process up to the final stabilization of the lattice. We have simulated the growth of vortex lattices from a rotating thermal cloud, and their production using a rotating trap.

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