论文标题

挫败感形状多通道近野物理学:星形透视图

Frustration shapes multi-channel Kondo physics: a star graph perspective

论文作者

Patra, Siddhartha, Mukherjee, Abhirup, Mukherjee, Anirban, Vidhyadhiraja, N. S., Taraphder, A., Lal, Siddhartha

论文摘要

我们使用最近开发的统一重新归一化组(URG)技术研究了过度应用的多渠道临近(MCK)模型。我们的结果表明,基态变性在解释各种重要特性(例如筛选的细分和局部非Fermi液体的存在)中的重要性。零带宽(或星形图)中的中间耦合固定点哈密顿量的杂质敏感性显示在低温下的幂律差异,表明其关键性质。尽管在MCK固定点哈密顿量中没有通道间耦合,但对任何两个通道之间的相互信息的研究都显示出它们之间的非零相关性。恒星图的光谱流分析表明,退化的基态歧管具有拓扑量子数。在两种和三通道案例中,在恒星图中添加有限的非零传导浴色散时获得的低能有效汉密尔顿,这表明存在由通道间量子量波动引起的局部非Fermi液体。在基态纠缠的几种措施中观察到了不连续的行为,这表明与退化基态歧管相关的基本正交性灾难。我们将结果扩展到通过二元论证划定和完美筛选的MCK模型。对肾上腺素化流量下的通道各向异性的研究揭示了由于基态退化的变化而导致的一系列量子相变。因此,我们的工作提出了一个模板,用于研究多通道量子杂质模型中对称性和二元性能产生的退化基态流形,可以导致中间耦合时新型的多政治相。

We study the overscreened multi-channel Kondo (MCK) model using the recently developed unitary renormalization group (URG) technique. Our results display the importance of ground state degeneracy in explaining various important properties like the breakdown of screening and the presence of local non-Fermi liquids. The impurity susceptibility of the intermediate coupling fixed point Hamiltonian in the zero-bandwidth (or star graph) limit shows a power-law divergence at low temperature, signalling its critical nature. Despite the absence of inter-channel coupling in the MCK fixed point Hamiltonian, the study of mutual information between any two channels shows non-zero correlation between them. A spectral flow analysis of the star graph reveals that the degenerate ground state manifold possesses topological quantum numbers. The low energy effective Hamiltonian obtained upon adding a finite non-zero conduction bath dispersion to the star graph Hamiltonian for both the two and three-channel cases displays the presence of local non-Fermi liquids arising from inter-channel quantum fluctuations. Discontinuous behaviour is observed in several measures of ground state entanglement, signalling the underlying orthogonality catastrophe associated with the degenerate ground state manifold. We extend our results to underscreened and perfectly screened MCK models through duality arguments. A study of channel anisotropy under renormalisation flow reveals a series of quantum phase transitions due to the change in ground state degeneracy. Our work thus presents a template for the study of how a degenerate ground state manifold arising from symmetry and duality properties in a multichannel quantum impurity model can lead to novel multicritical phases at intermediate coupling.

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