English

Spin wave Hamiltonian and anomalous scattering in NiPS$_3$

Strongly Correlated Electrons 2023-09-06 v2

Abstract

We report a comprehensive spin wave analysis of the semiconducting honeycomb van der Waal antiferromagnet NiPS3_3. Using single crystal inelastic neutron scattering, we map out the full Brillouin zone and fit the observed modes to a spin wave model with rigorously defined uncertainty. We find that the third neighbor exchange J3J_3 dominates the Hamiltonian, a feature which we fully account for by ab-initio density functional theory calculations. We also quantify the degree to which the three-fold rotation symmetry is broken and account for the Q=0Q=0 excitations observed in other measurements, yielding a spin exchange model which is consistent across multiple experimental probes. We also identify a strongly reduced static ordered moment and reduced low-energy intensity relative to the linear spin wave calculations, signaling unexplained features in the magnetism which requires going beyond the linear spin wave approximation.

Keywords

Cite

@article{arxiv.2302.07242,
  title  = {Spin wave Hamiltonian and anomalous scattering in NiPS$_3$},
  author = {A. Scheie and Pyeongjae Park and J. W. Villanova and G. E. Granroth and C. L. Sarkis and Hao Zhang and M. B. Stone and Je-Geun Park and S. Okamoto and T. Berlijn and D. A. Tennant},
  journal= {arXiv preprint arXiv:2302.07242},
  year   = {2023}
}

Comments

7 pages, 8 figures; 8 pages and 10 additional figures of appendices