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Emergent dynamical Kondo coherence and competing magnetic order in a correlated kagome flat-band metal CsCr6Sb6

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arxiv 2508.08580 v1 pith:45BLP6FU submitted 2025-08-12 cond-mat.str-el

classification cond-mat.str-el
keywords kondomagneticcorrelatedcscr6sb6dynamicalelectronickagomeorder
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Correlated kagome metals host unique electronic states that enable exotic quantum phenomena. In the recently emerged CsCr6Sb6, these manifest through Kondo behavior from localized Cr-3d electrons and unprecedented band flattening near the Fermi level. Yet the intricate interplay among Kondo screening, magnetic frustration, and electronic correlations remains poorly understood-a fundamental gap we address through multifaceted experimental and theoretical approaches. Our angle-resolved photoemission spectroscopy measurements reveal electronic correlation-renormalized flat bands and muon spin relaxation study detect short-range magnetic order at TN ~ 80 K. Complementing these findings, density-functional theory and dynamical mean-field theory calculations identify a coherent-incoherent crossover at TN, with a remarkable restoration of coherence accompanying local moment suppression-an anomalous hallmark of Kondo behavior. Intriguingly, despite strong interlayer antiferromagnetic coupling, the system evades long-range magnetic order due to competing magnetic configurations separated by sub-meV energy differences. These insights establish CsCr6Sb6 as a prototypical platform for investigating dynamical Kondo screening in correlated flat-band systems, opening new avenues to study flat band physics and frustrated magnetism in correlated kagome lattices.

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  1. Observation of Resonance of Kagome Flat Band Doublet

    cond-mat.str-el 2026-03 conditional novelty 8.0 of 10

    In CsCr6Sb6, cooling to ~72 K makes flat and dispersive kagome bands hybridize—a flat band resonance—simultaneously with the onset of short-range antiferromagnetism.

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