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Kondo holes in the 2D itinerant Ising ferromagnet Fe3GeTe2

Materials Science 2021-08-11 v2 Strongly Correlated Electrons

Abstract

Heavy fermion (HF) states emerge in correlated quantum materials due to the interplay between localized magnetic moments and itinerant electrons, but rarely appear in 3d-electron systems due to high itinerancy of d-electrons. Here, an anomalous enhancement of Kondo screening is observed at the Kondo hole of local Fe vacancies in Fe3GeTe2 which is a recently discovered 3d-HF system featuring of Kondo lattice and two-dimensional itinerant ferromagnetism. An itinerant Kondo-Ising model is established to reproduce the experimental results which provides insight of the competition between Ising ferromagnetism and Kondo screening. This work explains the microscopic origin of the d-electron HF states and inspires study of the enriched quantum many-body phenomena with Kondo holes in Ising ferromagnets.

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Cite

@article{arxiv.2008.10842,
  title  = {Kondo holes in the 2D itinerant Ising ferromagnet Fe3GeTe2},
  author = {Mengting Zhao and Binbin Chen and Yilian Xi and Yanyan Zhao and Hongrun Zhang and Haifeng Feng and Jincheng Zhuang and Xun Xu and Weichang Hao and Wei Li and Si Zhou and Shi Xue Dou and Yi Du},
  journal= {arXiv preprint arXiv:2008.10842},
  year   = {2021}
}

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17 Pages, 4 Figures