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Get Free AccessThe symbiosis of strong interactions, flat bands, topology and symmetry has led to the discovery of exotic phases of matter, including fractional Chern insulators, correlated moiré topological superconductors, and Dirac and Weyl semimetals. Correlated metals, such as those present in Kondo lattices, rely on the screening of local moments by a sea of non-magnetic conduction electrons. Here, we report on a unique topological Kondo lattice compound, CeCo2P2, where the Kondo effect - whose existence under the magnetic Co phase is protected by PT symmetry - coexists with antiferromagnetic order emerging from the flat bands associated with the Co atoms. Remarkably, this is the only known Kondo lattice compound where magnetic order occurs in non-heavy electrons, and puzzlingly, at a temperature significantly higher than that of the Kondo effect. Furthermore, at low temperatures, the emergence of the Kondo effect, in conjunction with a glide-mirror-z symmetry, results in a nodal line protected by bulk topology near the Fermi energy. These unusual properties, arising from the interplay between itinerant and correlated electrons from different constituent elements, lead to novel quantum phases beyond the celebrated topological Kondo insulators and Weyl Kondo semimetals. CeCo2P2 thus provides an ideal platform for investigating narrow bands, topology, magnetism, and the Kondo effect in strongly correlated electron systems.
Defa Liu, Yuanfeng Xu, Haiyang Hu, J. Y. Liu, Tianping Ying, Yu Lv, Yi Jiang, C. Chen, Yanling Yang, Ding Pei, D. Prabhakaran, Mei Gao, Jingyang Wang, Q. H. Zhang, Fanqi Meng, T. Balasubramanian, Craig Polley, Makoto Hashimoto, Da-Chuan Lu, Niels B. M. Schröter, Vladimir N. Strocov, Alex Louat, Céphise Cacho, Deepnarayan Biswas, Tien‐Lin Lee, P. Steadman, Peter Bencok, Y. B. Chen, Lin Gu, T. Hesjeda, G. van der Laan, Hideo Hosono, Lei Yang, Zi‐Kui Liu, Hongtao Yuan, B. Andrei Bernevig, Y. L. Chen (2024). Discovery of an Antiferromagnetic Topological Nodal-line Kondo Semimetal. , DOI: https://doi.org/10.48550/arxiv.2411.13898.
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Type
Preprint
Year
2024
Authors
37
Datasets
0
Total Files
0
Language
en
DOI
https://doi.org/10.48550/arxiv.2411.13898
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