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- W1975715360 abstract "Abstract We present an explicit analytical analysis of the ground state of vortex lattice structure, based on a minimization of the generalized Gross–Pitaevskii energy functional in a trapped rotating Fermi superfluid gas. By a Bogoliubov-like transformation we find that the coarse-grained average of the atomic density varies as inverted parabola in three dimensional cases; the Fermi superfluid in the BEC regime enters into the lowest Landau level at fast rotation, in which the vortices form an almost regular triangular lattice over a central region and the vortex lattice is expanded along the radial direction in the outer region; the fluid in the unitarity and BCS regimes occupies many low-lying Landau levels, in which a trapped gas with a triangular vortex lattice has a superfluid core surrounded by a normal gas. The calculation is qualitatively consistent with recent numerical and experimental data both in the vortex lattice structure and vortex numbers and in the density profiles versus the stirring frequency in the whole BCS–BEC crossover." @default.
- W1975715360 created "2016-06-24" @default.
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- W1975715360 date "2012-08-01" @default.
- W1975715360 modified "2023-09-27" @default.
- W1975715360 title "Vortex lattices in a rotating Fermi superfluid in the BCS–BEC crossover with many Landau levels" @default.
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- W1975715360 doi "https://doi.org/10.1016/j.aop.2012.03.006" @default.
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