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Realization of Kagome Kondo lattice

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arxiv 2404.12374 v2 pith:33NO4JIA submitted 2024-04-18 cond-mat.str-el cond-mat.mtrl-sci

classification cond-mat.str-elcond-mat.mtrl-sci
keywords kondolatticekagomemagnetismphysicsrealizationbeenelectrons
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The Kondo lattice, describing a grid of the local magnetic moments coupling to itinerant electrons, is a fertile ground of strongly correlated states in condensed matter physics. While the Kagome lattice has long been predicted to host Kondo physics with exotic magnetism and nontrivial topology, no experimental realization has been achieved. Here, we report the discovery of CsCr6Sb6, a van der Waals-like Kagome Kondo lattice featuring extremely flat, isolated bands at the Fermi level (EF) that composed entirely of Cr-3d electrons. We observe heavy fermions with the effective mass over 100 times greater than those of its vanadium counterpart. We also observe Kondo insulating behavior in an ultra-low carrier density of 1019 cm-3 and dimensionality-induced Kondo breakdown. More interestingly, the frustrated magnetism observed in the bulk give way to a hidden A-type antiferromagnetic ordering in few layers, in sharp contrast to the common sense of weakened magnetism with thinning. The realization of Kondo physics in Kagome lattice opens avenues for exploring diverse quantum criticalities in a strongly-correlated frustrated system.

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  1. Strongly correlated altermagnet CaCrO$_3$

    cond-mat.str-el 2025-07 conditional novelty 5.0 of 10

    DFT+DMFT calculations identify CaCrO3 as a strongly correlated altermagnet and a Hund's metal, with Hund's coupling promoting altermagnetism-induced flat bands and heavy-fermion behavior.

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