Thursday, March 29, 2012

1203.6211 (Hongmei Wang et al.)

Density-functional theory for 1D harmonically trapped Bose-Fermi mixture    [PDF]

Hongmei Wang, Yajiang Hao, Yunbo Zhang
We present a density-functional theory for the one dimensional harmonically trapped Bose-Fermi mixture with repulsive contact interactions. The ground state density distribution of each component is obtained by solving the Kohn-Sham equations numerically based on the Local Density Approximation and the exact solution for the homogeneous system given by Bethe ansatz method. It is shown that for strong enough interaction, a considerable amount of fermions are repelled out of the central region of the trap, exhibiting partial phase separation of Bose and Fermi components. Oscillations emerge in the Bose density curves reflecting the strong correlation with Fermions. For infinite strong interaction, the ground state energy of the mixture and the total density are consistent with the scenario that all atoms in the mixture are fully fermionized.
View original: http://arxiv.org/abs/1203.6211

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