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Finite-temperature phase diagram of nonmagnetic impurities in high-temperature superconductors using a d=3 tJ model with quenched disorder

机译:d = 3 tJ淬火无序模型在高温超导体中非磁性杂质的有限温度相图

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摘要

We study a quenched disordered d=3 tJ Hamiltonian with static vacancies as a model of nonmagnetic impurities in high-T-c materials. Using a renormalization-group approach, we calculate the evolution of the finite-temperature phase diagram with impurity concentration p and find several features with close experimental parallels: Away from half filling, we see the rapid destruction of a spin-singlet phase (analogous to the superconducting phase in cuprates) which is eliminated for p greater than or similar to 0.05; in the same region for these dilute impurity concentrations, we observe an enhancement of anti ferromagnetism. The anti ferromagnetic phase near half filling is robust against impurity addition and disappears only for p greater than or similar to 0.40.
机译:我们研究了具有静态空位的淬火无序d = 3 tJ哈密顿量,作为高T-c材料中非磁性杂质的模型。使用重归一化组方法,我们计算了具有杂质浓度p的有限温度相图的演化,并找到了与实验相似的相似特征:除半填充外,我们看到了自旋单相的快速破坏(类似于被消除的p大于或等于0.05的超导相;在这些稀杂质浓度相同的区域中,我们观察到反铁磁性增强。接近一半填充的反铁磁相具有抵抗杂质添加的作用,并且仅在p大于或等于0.40时消失。

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