English

Evidence for incommensurate antiferromagnetism in nonsymmorphic UPd$_{0.65}$Bi$_2$

Strongly Correlated Electrons 2024-12-17 v1 Materials Science Other Condensed Matter

Abstract

The intersection between nonsymmorphic symmetry and electronic correlations has emerged as a platform for topological Kondo semimetallic states and unconventional spin textures. Here we report the synthesis of nonsymmorphic UPd0.65_{0.65}Bi2_2 single crystals and their structural, electronic, magnetic, and thermodynamic properties. UPd0.65_{0.65}Bi2_2 orders antiferromagnetically (AFM) below TNT_N\simeq 161 K as evidenced by a sharp cusp in magnetic susceptibility, a second-order phase transition in specific heat, and an upturn in electrical resistivity, which suggests an incommensurate AFM structure that deviates from the A-type magnetism typically observed in this class of materials. Across TNT_N, Hall effect measurements reveal a change from electron-dominated to hole-dominated transport, which points to a sharp reconstruction in the electronic structure at TNT_N. Upon further cooling, a first-order transition is observed at T130T_1 \simeq 30 K in magnetic susceptibility and heat capacity but not in electrical resistivity or Hall measurements, which indicates a small change in the AFM structure that does not affect the electronic structure. Our specific heat data reveal a small Sommerfeld coefficient (γ\gamma \simeq13 mJmol1^{-1}K2^{-2}), consistent with localized 5ff electrons. Our results indicate that UPd0.65_{0.65}Bi2_2 hosts weak electronic correlations and is likely away from a Kondo semimetallic state. Low-temperature magnetization measurements show that the AFM structure is remarkably stable to 160 kOe and does not undergo any field-induced transitions. Neutron diffraction and magnetization experiments at higher fields would be valuable to probe the presence of unconventional spin textures.

Keywords

Cite

@article{arxiv.2412.10998,
  title  = {Evidence for incommensurate antiferromagnetism in nonsymmorphic UPd$_{0.65}$Bi$_2$},
  author = {Sanu Mishra and Caitlin S. Kengle and Joe D. Thompson and Allen O. Scheie and Sean. M. Thomas and Filip Ronning and Priscila F. S. Rosa},
  journal= {arXiv preprint arXiv:2412.10998},
  year   = {2024}
}

Comments

8 pages, 4 figures