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Toward a topological scenario for high-temperature superconductivity of copper oxides

机译:朝向铜氧化物高温超导性的拓扑情景

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The structure of the joint phase diagram demonstrating high-Tc superconductivity of copper oxides is studied on the basis of the theory of interaction-induced flat bands. Prerequisites for an associated topological rearrangement of the Landau state are established, and related non-Fermi-liquid (NFL) behavior of the normal states of cuprates is investigated. We focus on manifestations of this behavior in the electrical resistivity rho(T), especially the observed gradual crossover from normal-state T-linear behavior rho(T, x) = A(1) (x)T at doping x below the critical value X-c(h) of hole doping for termination of superconductivity, to T-quadratic behavior at x x(c)(h), which is incompatible with predictions of the conventional quantum-critical-point scenario. It is demonstrated that the slope of the coefficient A(1) is universal, being the same on both boundaries of the joint phase diagram of cuprates, in agreement with available experimental data. (C) 2018 Published by Elsevier B.V.
机译:基于相互作用诱导的平带理论,研究了表明铜氧化物高TC超导性的关节相图的结构。确定了LADERATION的相关拓扑重排的先决条件,并研究了铜酸酯正常状态的相关非费米液(NFL)行为。我们专注于电阻率rho(t)中这种行为的表现,特别是观察到从正常状态T线性行为Rho(t,x)= a(1)(x)t处的临界x下方的逐渐交叉孔掺杂的孔Xc(h)用于终止超导,在X&gt的T-二次行为中; X(c)(h),与传统量子关键点情景的预测不兼容。结果证明系数a(1)的斜率是通用的,在铜替物替代的联合相图的两个边界上是相同的,与可用的实验数据一致。 (c)2018由elestvier b.v出版。

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