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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Superfluid pairing in a mixture of a spin-polarized Fermi gas and a dipolar condensate
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Superfluid pairing in a mixture of a spin-polarized Fermi gas and a dipolar condensate

机译:自旋极化费米气体和偶极冷凝物的混合物中的超流体配对

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摘要

A mixture of a spin-polarized Fermi gas and a dipolar Bose-Einstein condensate is considered in which s-wave scattering between fermions and the quasiparticles of the dipolar condensate can result in an effective attractive Fermi-Fermi interaction long-range and anisotropic in nature and tunable by the dipolar interaction. It is shown that such an interaction can significantly increase the prospect of realizing a superfluid with a gap parameter characterized with a coherent superposition of all odd partial waves. In the spirit of the Hartree-Fock-Bogoliubov mean-field approach, a theory is formulated that allows the estimation of the critical temperature when the anisotropic Fock potential is taken into consideration and the determination of the system parameters that optimize the critical temperature at which such a superfluid emerges before the system begins to phase separate.
机译:考虑了自旋极化费米气体和偶极玻色-爱因斯坦冷凝物的混合物,其中费米子与偶极冷凝物的准粒子之间的s波散射会导致有效的吸引性费米-费米相互作用,并且本质上是各向异性的并且可以通过偶极相互作用来调节。结果表明,这种相互作用可以显着增加实现具有间隙参数的超流体的可能性,该间隙参数的特征在于所有奇数分波的相干叠加。本着Hartree-Fock-Bogoliubov平均场方法的精神,提出了一种理论,当考虑各向异性Fock势时,可以估算临界温度,并确定优化临界温度的系统参数。这样的超流体在系统开始分相之前就出现了。

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