English

CeAu$_{2}$Bi: a new nonsymmorphic antiferromagnetic compound

Strongly Correlated Electrons 2019-07-25 v1

Abstract

Here we report the structural and electronic properties of CeAu2_{2}Bi, a new heavy-fermion compound crystallizing in a nonsymmorphic hexagonal structure (P63/mmcP63/mmc). The Ce3+^{3+} ions form a triangular lattice which orders antiferromagnetically below TN=3.1T_{N} = 3.1~K with a magnetic hard axis along the c-axis. Under applied pressure, TNT_{N} increases linearly at a rate of 0.070.07~K/kbar, indicating that the Ce ff-electrons are fairly localized. In fact, heat capacity measurements provide an estimate of 150(10) mJ/mol.K2^{2} for the Sommerfeld coefficient. The crystal-field scheme obtained from our thermodynamic data points to a ground state with dominantly jz=±1/2|j_{z}=\pm1/2\rangle character, which commonly occurs in systems with a hard c-axis. Finally, electronic band structure calculations and symmetry analysis in kk-space reveal that CeAu2_{2}Bi hosts symmetry-protected crossings at kz=πk_{z} = \pi in the paramagnetic state

Keywords

Cite

@article{arxiv.1907.10084,
  title  = {CeAu$_{2}$Bi: a new nonsymmorphic antiferromagnetic compound},
  author = {M. M. Piva and W. Zhu and F. Ronning and J. D. Thompson and P. G. Pagliuso and P. F. S. Rosa},
  journal= {arXiv preprint arXiv:1907.10084},
  year   = {2019}
}

Comments

7 pages, 5 figures. Supplemental Material: 4 pages, 2 figures

R2 v1 2026-06-23T10:28:43.930Z