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Scaling behaviour and superconducting instability in anisotropic non-Fermi liquids

机译:各向异性非费米液体中的缩放行为和超导不稳定性

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We study the scaling behaviour of the optical conductivity (a), free energy density (F) and shear viscosity of the quantum critical point associated with spin density wave phase transition for a two-dimensional metallic system with C-2 symmetry. A non-Fermi liquid behaviour emerges at two pairs of isolated points on the Fermi surface due to the coupling of a bosonic order parameter to fermionic excitations at those so-called "hot-spots". We find that near the hot-spots, sigma and F obey the scalings expected for such an anisotropic system, and the direction-dependent viscosity to entropy density ratio is not a universal number due to the anisotropy. Lastly, we also estimate the effect of the fermion-boson coupling at the hot-spots on superconducting instabilities. (C) 2016 Elsevier Inc. All rights reserved.
机译:我们研究了与具有C-2对称的二维金属系统的旋转密度波相转变相关的量子临界点的光导率(A),自由能密度(F)和剪切粘度的缩放行为。 由于旋转顺序参数在所谓的“热点”的那些所谓的“热点”,因此由于伴者顺序参数与Fermionic激发的耦合而在FERMI表面上的两对孤立点出现了非费米液体行为。 我们发现附近的热点,Sigma和F遵守这种各向异性系统所期望的缩放,并且由于各向异性,熵粘度与熵密度比的方向粘度不是通用数量。 最后,我们还估计了Fermion-Boson耦合在超导稳定性上的热点上的效果。 (c)2016年Elsevier Inc.保留所有权利。

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