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Localized f-electron magnetism in the semimetal Ce3Bi4Au3

Strongly Correlated Electrons 2023-12-12 v1 Materials Science

Abstract

Ce3_{3}Bi4_{4}Au3_{3} crystallizes in the same non-centrosymmetric cubic structure as the prototypical Kondo insulator Ce3_{3}Bi4_{4}Pt3_{3}. Here we report the physical properties of Ce3_{3}Bi4_{4}Au3_{3} single crystals using magnetization, thermodynamic, and electrical-transport measurements. Magnetic-susceptibility and heat-capacity data reveal antiferromagnetic (AFM) order below TN=3.2T_N=3.2 K. The magnetic entropy SmagS_{\rm mag} reaches RRln2 slightly above TNT_N, which suggests localized 4f4f-moments in a doublet ground state. Multiple field-induced magnetic transitions are observed at temperatures below TNT_N, which indicate a complex spin structure with competing interactions. Ce3_{3}Bi4_{4}Au3_{3} shows semimetallic behavior in electrical resistivity measurements in contrast to the majority of reported Cerium-based 343 compounds. Electrical-resistivity measurements under hydrostatic pressure reveal a slight enhancement of TNT_N under pressures up to 2.3 GPa, which supports a scenario wherein Ce3_{3}Bi4_{4}Au3_{3} belongs to the far left of the Doniach phase diagram dominated by Ruderman-Kittel-Kasuya-Yosida (RKKY) interactions. Using realistic many-body simulations, we confirm the semi-metallic electronic structure of Ce3_{3}Bi4_{4}Au3_{3} and quantitatively reproduce its local moment behavior in the paramagnetic state.

Keywords

Cite

@article{arxiv.2309.02559,
  title  = {Localized f-electron magnetism in the semimetal Ce3Bi4Au3},
  author = {M. O. Ajeesh and S. K. Kushwaha and S. M. Thomas and J. D. Thompson and M. K. Chan and N. Harrison and J. M. Tomczak and P. F. S. Rosa},
  journal= {arXiv preprint arXiv:2309.02559},
  year   = {2023}
}

Comments

10 pages, 10 figures