Ultracold Atomic Fermi–Bose Mixtures in Bichromatic Optical Dipole Traps: A Novel Route to Study Fermion Superfluidity

被引:0
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作者
Roberto Onofrio
Carlo Presilla
机构
[1] Università di Padova,Dipartimento di Fisica “G. Galilei,”
[2] Istituto Nazionale per la Fisica della Materia,Unità di Roma 1 and Center for Statistical Mechanics and Complexity
[3] Los Alamos National Laboratory,undefined
[4] Istituto Nazionale di Fisica Nucleare,undefined
来源
Journal of Statistical Physics | 2004年 / 115卷
关键词
Bose and Fermi degenerate gases; superfluidity and superconductivity; evaporative cooling; sympathetic cooling; nonequilibrium statistical mechanics; Bose-Fermi mixtures;
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摘要
The study of low density, ultracold atomic Fermi gases is a promising avenue to understand fermion superfluidity from first principles. One technique currently used to bring Fermi gases in the degenerate regime is sympathetic cooling through a reservoir made of an ultracold Bose gas. We discuss a proposal for trapping and cooling of two-species Fermi–Bose mixtures into optical dipole traps made from combinations of laser beams having two different wavelengths. In these bichromatic traps it is possible, by a proper choice of the relative laser powers, to selectively trap the two species in such a way that fermions experience a stronger confinement than bosons. As a consequence, a deep Fermi degeneracy can be reached having at the same time a softer degenerate regime for the Bose gas. This leads to an increase in the sympathetic cooling efficiency and allows for higher precision thermometry of the Fermi–Bose mixture.
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页码:57 / 89
页数:32
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