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Relation connecting thermodynamics and transport of atomic unitary Fermi superfluids

机译:连接热力学和原子酉FERMI超氟的关系

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摘要

The shear viscosity has been shown to be equal to the product of the pressure and relaxation time in normal scaleinvariant fluids, but the presence of superfluidity at low temperatures can alter the relation. Using the mean-field BCS-Leggett theory with a gauge-invariant linear response theory for unitary Fermi superfluids, we present an explicit relation between thermodynamic quantities, including the pressure and chemical potential, and transport coefficients, including the shear viscosity, superfluid density, and anomalous shear viscosity from momentum transfer via Cooper pairs. The relation is modified when pairing fluctuations associated with noncondensed Cooper pairs are considered. Within a pairing fluctuation theory consistent with the BCS-Leggett ground state, we found an approximate relation for unitary Fermi superfluids. The exact mean-field relation and the approximate one with pairing fluctuations advance our understanding of relations between equilibrium and transport quantities in superfluids, and they help determine or constrain quantities which otherwise can be difficult to measure.
机译:已经显示剪切粘度等于正常跳过液体中的压力和弛豫时间的产物,但在低温下的超浊度可以改变关系。使用平均字段BCS-Leggett理论与单一的Fermi Superfluids的仪表 - 不变线性响应理论,我们在热力学量之间存在明确的关系,包括压力和化学势,以及包括剪切粘度,超流密度,通过Cooper对从动量转移的异常剪切粘度。当考虑与非均多杯组合器对的配对波动时,修改关系。在与BCS-Leggett地面状态一致的配对波动理论中,我们找到了对单一的Fermi Superfluids的近似关系。确切的平均场关系和配对波动的近似的近似的一个,我们对超流体中的平衡和运输量之间的关系的理解,它们有助于确定或限制否则可能难以测量的量。

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