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Critical local moment fluctuations and enhanced pairing correlations in a cluster Anderson model

机译:集群安德森模型中的关键局部力矩波动和增强的配对相关性

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The appearance of unconventional superconductivity near heavy-fermion quantum critical points (QCPs) motivates investigation of pairing correlations close to a "beyond Landau" Kondo-destruction QCP. We focus on a two-Anderson-impurity cluster in which Kondo destruction is induced by a pseudogap in the conduction-electron density of states. Analysis via continuous-time quantum Monte Carlo and the numerical renormalization group reveals a previously unstudied QCP that both displays the critical-local moment fluctuations characteristic of Kondo destruction and leads to a strongly enhanced singlet-pairing susceptibility. Our results provide insights into the mechanism for superconductivity in quantum critical metals.
机译:重金属费米量子临界点(QCP)附近出现了非常规的超导电性,这促使人们研究了接近“超越Landau”近藤破坏QCP的配对相关性。我们集中在两个安德森杂质簇上,其中近藤破坏是由状态的传导电子密度中的伪间隙引起的。通过连续时间量子蒙特卡洛和数值重整化组进行的分析揭示了一个以前尚未研究的QCP,它既显示了Kondo破坏的临界局部矩波动,又导致单线态对易感性大大增强。我们的结果提供了对量子临界金属超导机理的见解。

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  • 来源
    《Physical review》 |2020年第1期|014452.1-014452.8|共8页
  • 作者单位

    Department of Physics and Astronomy Rice Center for Quantum Materials Rice University Houston Texas 77005 USA;

    Department of Physics and Astronomy Center for Materials Theory Rutgers University Piscataway New Jersey 08854 USA Department of Physics Condensed Matter Theory Center and the Joint Quantum Institute University of Maryland College Park Maryland 20742-4111 USA;

    Department of Physics University of Florida Gainesville Florida 32611-8440 USA;

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