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Luttinger theorem and imbalanced Fermi systems

机译:Luttinger定理和不平衡的费米系统

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The proof of the Luttinger theorem, which was originally given for a normal Fermi liquid with equal spin populations formally described by the exact many-body theory at zero temperature, is here extended to an approximate theory given in terms of a "conserving" approximation also with spin imbalanced populations. The need for this extended proof, whose underlying assumptions are here spelled out in detail, stems from the recent interest in superfluid trapped Fermi atoms with attractive inter-particle interaction, for which the difference between two spin populations can be made large enough that superfluidity is destroyed and the system remains normal even at zero temperature. In this context, we will demonstrate the validity of the Luttinger theorem separately for the two spin populations for any "Phi-derivable" approximation, and illustrate it in particular for the self-consistent t-matrix approximation.
机译:最初给予常规Fermi液体的Luttinger定理的证明,该纯度纯度在零温度下正式描述了正式的旋转血液,在此延伸到“节约”近似方面给出的近似理论 旋转不平衡的人群。 这种扩展证明的需求,其潜在的假设在这里详细阐述,源于近期血液捕获的费米原子的兴趣,具有吸引力的颗粒间相互作用,可以使两个旋转群体之间的差异足够大的超浊度 即使在零温度下,销毁和系统也保持正常。 在这种情况下,我们将分别展示Luttinger定理对任何“PHI衍生”近似的两个旋转群体,并且特别地用于自我一致的T矩阵近似。

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