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首页> 外文期刊>Journal of Statistical Physics >Ultracold atomic Fermi-Bose mixtures in bichromatic optical dipole traps: A novel route to study fermion superfluidity
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Ultracold atomic Fermi-Bose mixtures in bichromatic optical dipole traps: A novel route to study fermion superfluidity

机译:双色光学偶极阱中的超冷原子费米-玻色混合物:研究费米子超流动性的新途径

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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. [References: 97]
机译:低密度,超冷原子费米气体的研究是从第一性原理了解费米超流动性的有前途的途径。当前用于使费米气体处于简并状态的一种技术是通过由超冷玻色气体制成的储层进行的同情冷却。我们讨论了将两种费米-玻色混合物捕获和冷却到由具有两种不同波长的激光束组合而成的光学偶极阱中的建议。在这些双色陷阱中,可以通过适当选择相对激光功率来选择性地捕获两个物种,使得费米子比玻色子受到更强的限制。结果,可以达到深的费米简并性,同时对于玻色气体具有更软的简并方案。这导致交感冷却效率的提高,并允许费米-玻色混合物的高精度测温。 [参考:97]

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