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Crystal-electric-field excitations in a quantum-spin-liquid candidate NaErS$_2$

Strongly Correlated Electrons 2020-07-20 v2 Materials Science

Abstract

The delafossite family of compounds with a triangular lattice of rare earth ions has been recently proposed as a candidate host for quantum spin liquid (QSL) states. To realize QSLs, the crystal-electric-field (CEF) ground state of the rare earth ions should be composed of a doublet that allows sizable quantum tunneling, but till now the knowledge on CEF states in the delafossite compounds is still limited. Here we employ inelastic neutron scattering (INS) to study the CEF transitions in a powder sample of the delafossite NaErS2_2, where the large total angular momentum J=15/2J = 15/2 of the Er3+^{3+} ions and the resulting plethora of CEF transitions enable an accurate fit of the CEF parameters. Our study reveals nearly isotropic spins with large Jz=±1/2J_z = \pm 1/2 components for the Er3+^{3+} CEF ground states, which might facilitate the development of a QSL state. The scaling of the obtained CEF Hamiltonian to different rare earth ions suggests that sizable Jz=±1/2J_z = \pm 1/2 components are generally present in the CEF ground states, supporting the ternary sulfide delafossites as potential QSL hosts.

Keywords

Cite

@article{arxiv.1911.10662,
  title  = {Crystal-electric-field excitations in a quantum-spin-liquid candidate NaErS$_2$},
  author = {Shang Gao and Fan Xiao and Kazuya Kamazawa and Kazuhiko Ikeuchi and Daniel Biner and Karl Krämer and Christian Rüegg and Taka-hisa Arima},
  journal= {arXiv preprint arXiv:1911.10662},
  year   = {2020}
}

Comments

7 pages, 5 figures, with updated XRD refinement and CEF analysis