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Kondo 纳米系统中的突发相干晶格行为。

Emergent Coherent Lattice Behavior in Kondo Nanosystems.

机构信息

Institut für Theoretische Physik und Astrophysik, Universität Würzburg, Am Hubland, D-97074 Würzburg, Germany.

出版信息

Phys Rev Lett. 2019 Mar 8;122(9):097203. doi: 10.1103/PhysRevLett.122.097203.

Abstract

How many magnetic moments periodically arranged on a metallic surface are needed to generate a coherent Kondo lattice behavior? We investigate this fundamental issue within the particle-hole symmetric Kondo lattice model using quantum Monte Carlo simulations. Extra magnetic atoms forming closed shells around the initial impurity induce a fast splitting of the Kondo resonance at the inner shells, which signals the formation of composite heavy-fermion bands. The onset of the hybridization gap matches well the enhancement of antiferromagnetic spin correlations in the plane perpendicular to the applied magnetic field, a genuine feature of the coherent Kondo lattice. In contrast, the outermost shell remains dominated by a local Kondo physics with spectral features resembling the single-impurity behavior.

摘要

在金属表面周期性排列的多少个磁矩可以产生相干的康登晶格行为?我们在粒子-空穴对称的康登晶格模型中使用量子蒙特卡罗模拟研究了这个基本问题。在外围原子形成围绕初始杂质的闭合壳层时,会导致内壳层的康登共振迅速分裂,这标志着复合重费米子带的形成。杂化能隙的出现与外磁场垂直平面上反铁磁自旋相关性的增强非常吻合,这是相干康登晶格的一个真正特征。相比之下,最外层壳层仍然由局部的康登物理主导,其谱特征类似于单杂质行为。

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