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Finite-temperature phase diagram of a spin-polarized ultracold Fermi gas in a highly elongated harmonic trap

机译:高伸长谐波阱中自旋极化超冷费米气体的有限温度相图

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摘要

We investigate the finite-temperature properties of an ultracold atomic Fermi gas with spin population imbalance in a highly elongated harmonic trap. Previous studies at zero temperature showed that the gas stays in an exotic spatially inhomogeneous Fulde-Ferrell-Larkin-Ovchinnikov (FFLO) superfluid state at the trap center; while moving to the edge, the system changes into either a nonpolarized Bardeen-Cooper-Schrieffer superfluid (P < P-c) or a. fully polarized normal gas (P > P-c), depending on the smallness of the spin polarization P, relative to a critical value P-c. In this work, we show how these two phase-separation phases evolve with increasing temperature, and thereby construct a finite-temperature phase diagram. For typical interactions, we find that the exotic FFLO phase survives below one-tenth of Fermi degeneracy temperature, which seems to be accessible in the current experiment. The density profile, equation of state, and specific heat of the polarized system have been calculated and discussed in detail. Our results are useful for the ongoing experiment at Rice University on the search for FFLO states in quasi-one-dimensional polarized Fermi gases.
机译:我们研究了在高度伸长的谐波陷阱中具有自旋种群不平衡的超冷原子费米气体的有限温度特性。先前在零温度下进行的研究表明,气体在捕集阱中心停留在异乎寻常的空间不均匀的Fulde-Ferrell-Larkin-Ovchinnikov(FFLO)超流体状态。在移至边缘时,系统变为非极化的Bardeen-Cooper-Schrieffer超流体(P P-c),取决于自旋极化P的相对于临界值P-c的大小。在这项工作中,我们展示了这两个相分离相如何随温度升高而演化,从而构建了一个有限温度相图。对于典型的相互作用,我们发现奇异的FFLO相可以在费米简并温度的十分之一以下生存,该温度在当前实验中似乎可以访问。已计算并详细讨论了偏振系统的密度分布,状态方程和比热。我们的结果对于莱斯大学正在进行的关于在准一维极化费米气体中寻找FFLO状态的实验很有用。

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