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多电子问题广义磁化率中局域矩形成及其近藤屏蔽的指纹特征

Fingerprints of the Local Moment Formation and its Kondo Screening in the Generalized Susceptibilities of Many-Electron Problems.

作者信息

Chalupa P, Schäfer T, Reitner M, Springer D, Andergassen S, Toschi A

机构信息

Institute of Solid State Physics, TU Wien, A-1040 Vienna, Austria.

Collège de France, 11 place Marcelin Berthelot, 75005 Paris, France.

出版信息

Phys Rev Lett. 2021 Feb 5;126(5):056403. doi: 10.1103/PhysRevLett.126.056403.

Abstract

We identify the precise hallmarks of the local magnetic moment formation and its Kondo screening in the frequency structure of the generalized charge susceptibility. The sharpness of our identification even pinpoints an alternative criterion to determine the Kondo temperature of strongly correlated systems on the two-particle level, which only requires calculations at the lowest Matsubara frequency. We showcase its strength by applying it to the single impurity and the periodic Anderson model as well as to the Hubbard model. Our results represent a significant progress for the general understanding of quantum field theory at the two-particle level and allow for tracing the limits of the physics captured by perturbative approaches for correlated systems.

摘要

我们在广义电荷磁化率的频率结构中识别出了局域磁矩形成及其近藤屏蔽的精确特征。我们识别的精确性甚至在双粒子层面上确定了一种用于确定强关联系统近藤温度的替代标准,该标准仅需要在最低虚 Matsubara 频率下进行计算。我们将其应用于单杂质模型、周期 Anderson 模型以及 Hubbard 模型,以此展示其优势。我们的结果代表了在双粒子层面上对量子场论的一般理解取得了重大进展,并且能够追踪微扰方法在描述关联系统物理时的局限性。

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