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Theoretical Approach to the Gauge Invariant Linear Response Theories for Ultracold Fermi Gases with Pseudogap

机译:Pseudogap的超冷费米气体的规范不变线性响应理论的理论方法

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摘要

Recent experimental progress allows for exploring some important physical quantities of ultracold Fermi gases, such as the compressibility, spin susceptibility, viscosity, optical conductivity, and spin diffusivity. Theoretically, these quantities can be evaluated from suitable linear response theories. For BCS superfluid, it has been found that the gauge invariant linear response theories can be fully consistent with some stringent consistency constraints. When the theory is generalized to stronger than BCS regime, one may meet serious difficulties to satisfy the gauge invariance conditions. In this paper, we try to construct density and spin linear response theories which are formally gauge invariant for a Fermi gas undergoing BCS-Bose-Einstein Condensation (BEC) crossover, especially below the superfluid transition temperature T-c. We adapt a particular t-matrix approach which is close to the G(0)G formalism to incorporate noncondensed pairing in the normal state. We explicitly show that the fundamental constraints imposed by the Ward identities and Q-limit Ward identity are indeed satisfied.
机译:最近的实验进展允许探索超冷费米气体的一些重要物理量,例如可压缩性,自旋磁化率,粘度,光学导率和自旋扩散率。从理论上讲,这些量可以根据合适的线性响应理论进行评估。对于BCS超流体,已经发现规范不变线性响应理论可以在某些严格的一致性约束条件下完全一致。当该理论被推广到比BCS机制更强大时,可能会遇到严重的困难,无法满足规范不变性条件。在本文中,我们尝试构建密度和自旋线性响应理论,这些理论对于经过BCS-玻色-爱因斯坦凝聚(BEC)穿越,特别是在超流体转变温度T-c以下的费米气体具有形式上不变的规格。我们采用接近G(0)G形式主义的特定t矩阵方法,以合并正常状态下的非凝聚对。我们明确表明,实际上已经满足了由Ward身份和Q-limit Ward身份施加的基本约束。

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