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Low-energy excitations and singular contributions in the thermodynamics of clean Fermi liquids

机译:低能激发和纯费米液体热力学的奇异贡献

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Using a recently suggested method of bosonization in an arbitrary dimension, we study the anomalous contribution of the low-energy spin and charge excitations to thermodynamic quantities of a two-dimensional (2D) Fermi liquid. The method is slightly modified for the present purpose such that the effective supersymmetric action no longer contains the high-energy degrees of freedom but still accounts for effects of the finite curvature of the Fermi surface. Calculating the anomalous contribution δc(T) to the specific heat, we show that the leading logarithmic in temperature corrections to δc(T)/T~2 can be obtained in a scheme combining a summation of ladder diagrams and renormalization group equations. The final result is represented as the sum of two separate terms that can be interpreted as coming from singlet and triplet superconducting excitations. The latter may diverge in certain regions of the coupling constants, which should correspond to the formation of triplet Cooper pairs.
机译:使用最近提出的在任意维度上进行玻化的方法,我们研究了低能自旋和电荷激发对二维(2D)费米液体的热力学量的反常贡献。为此,对该方法进行了一些修改,以使有效的超对称作用不再包含高能量自由度,而是仍然考虑了费米表面的有限曲率的影响。通过计算对比热的异常贡献δc(T),我们可以看出,通过组合梯形图和重新归一化组方程的方案,可以获得对δc(T)/ T〜2的温度校正的领先对数。最终结果表示为两个独立项的总和,可以将其解释为来自单重态和三重态超导激发。后者可能在耦合常数的某些区域中发散,这应该对应于三重态库珀对的形成。

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