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Long-range magnetic order in the anisotropic triangular lattice system CeCd3As3

Strongly Correlated Electrons 2022-06-15 v1 Materials Science

Abstract

We report the physical properties of RRCd3_{3}As3_{3} (RR = La and Ce) compounds, crystallized into a hexagonal ScAl3_{3}C3_{3}-type structure (PP63_{3}/mmc) such that the RR sublattice forms a spin-orbit coupled triangular lattice. Magnetic susceptibility measurements indicate the 4ff electrons of Ce3+^{3+} ions are well localized and reveal a large magnetic anisotropy. The electrical resistivity and specific heat measurement for RRCd3_{3}As3_{3} exhibit an anomaly at high temperatures (T0T_{0} \sim 63 K for RR = La and T0T_{0} \sim 136 K for RR = Ce), most likely due to a structural transition. Specific heat measurements for CeCd3_{3}As3_{3} clearly indicate a long range magnetic order below TNT_{N} = 0.42 K. Although the magnetic contribution to the specific heat Cm/TC_{m}/T increases significantly below \sim 10 K, the electrical resistivity for CeCd3_{3}As3_{3} follows typical, metallic behavior inconsistent with Kondo lattice systems. In CeCd3_3As3_3 only \sim 40 %\% of the Rln(2)R \ln(2) magnetic entropy is recovered by TNT_N and the RRln(2) entropy is fully achieved at about the Curie-Weiss temperature θp|\theta_{p}|. Unusually, based on our current investigations, the magnetic specific heat below θp|\theta_{p}| is not attributed to a Kondo contribution, but rather associated with the magnetic ordering and frustration on the triangular lattice. Specific heat measurements in applied magnetic field show a negligible variation of TNT_{N} for HcH \parallel c, whereas a suppression of TNT_{N} is observed above 40 kOe for HabH \parallel ab. Such behavior is consistent with the application a magnetic field within the abab-plane breaking the triangular symmetry and partially relieving the magnetic frustration in this system.

Keywords

Cite

@article{arxiv.2206.06403,
  title  = {Long-range magnetic order in the anisotropic triangular lattice system CeCd3As3},
  author = {S. R. Dunsiger and J. Lee and J. E. Sonier and E. D. Mun},
  journal= {arXiv preprint arXiv:2206.06403},
  year   = {2022}
}

Comments

9 pages, 11 figures

R2 v1 2026-06-24T11:49:43.189Z