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Universal linear-temperature resistivity: possible quantum diffusion transport in strongly correlated superconductors

机译:通用线性温度电阻率:强相关超导体中可能的量子扩散传输

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摘要

The strongly correlated electron fluids in high temperature cuprate superconductors demonstrate an anomalous linear temperature (T) dependent resistivity behavior, which persists to a wide temperature range without exhibiting saturation. As cooling down, those electron fluids lose the resistivity and condense into the superfluid. However, the origin of the linear-T resistivity behavior and its relationship to the strongly correlated superconductivity remain a mystery. Here we report a universal relation dρ/dT=(μ0kB/)λL2, which bridges the slope of the linear-T-dependent resistivity (dρ/dT) to the London penetration depth λ L at zero temperature among cuprate superconductor Bi2Sr2CaCu2O8+δ and heavy fermion superconductors CeCoIn5, where μ 0 is vacuum permeability, k B is the Boltzmann constant and ħ is the reduced Planck constant. We extend this scaling relation to different systems and found that it holds for other cuprate, pnictide and heavy fermion superconductors as well, regardless of the significant differences in the strength of electronic correlations, transport directions, and doping levels. Our analysis suggests that the scaling relation in strongly correlated superconductors could be described as a hydrodynamic diffusive transport, with the diffusion coefficient (D) approaching the quantum limit D ~ ħ/m*, where m* is the quasi-particle effective mass.
机译:高温铜酸盐超导体中的强相关电子流体表现出依赖于线性温度(T)的反常电阻率行为,该行为在很宽的温度范围内都没有表现出饱和。随着冷却,这些电子流体失去电阻率并凝结为超流体。然而,线性T电阻率行为的起源及其与强相关超导性的关系仍然是一个谜。在这里,我们报告了一个通用关系 d ρ / dT < / mrow> = μ 0 k B / λ L 2 ,它在零温度下与铜酸盐超导体Bi2Sr2CaCu2O8 +δ和重金属之间的线性T依赖性电阻率(dρ/ dT)斜率与伦敦渗透深度λL桥接。费米子超导体CeCoIn如图5所示,其中μ0是真空渗透率,k B是玻尔兹曼常数,ħ是简化的普朗克常数。我们将此比例关系扩展到不同的系统,发现它也适用于其他铜酸盐、,化物和重费米子超导体,而不论电子相关强度,传输方向和掺杂水平的显着差异如何。我们的分析表明,强相关超导体的比例关系可以描述为流体动力扩散输运,扩散系数(D)接近量子极限D〜ħ/ m *,其中 m *是准粒子有效质量。

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