English

Thermal evolution of spin excitations in honeycomb Ising antiferromagnetic FePSe3

Strongly Correlated Electrons 2024-02-28 v1

Abstract

We use elastic and inelastic neutron scattering (INS) to study the antiferromagnetic (AF) phase transitions and spin excitations in the two-dimensional (2D) zig-zag antiferromagnet FePSe3_3. By determining the magnetic order parameter across the AF phase transition, we conclude that the AF phase transition in FePSe3_3 is first-order in nature. In addition, our INS measurements reveal that the spin waves in the AF ordered state have a large easy-axis magnetic anisotropy gap, consistent with an Ising Hamiltonian, and possible biquadratic magnetic exchange interactions. On warming across TNT_N, we find that dispersive spin excitations associated with three-fold rotational symmetric AF fluctuations change into FM spin fluctuations above TNT_N. These results suggest that the first-order AF phase transition in FePSe3_3 may arise from the competition between C3C_3 symmetric AF and C1C_1 symmetric FM spin fluctuations around TNT_N, in place of a conventional second-order AF phase transition.

Keywords

Cite

@article{arxiv.2402.16983,
  title  = {Thermal evolution of spin excitations in honeycomb Ising antiferromagnetic FePSe3},
  author = {Lebing Chen and Xiaokun Teng and Ding Hu and Feng Ye and Garrett E. Granroth and Ming Yi and Jae-Ho Chung and Robert J. Birgeneau and Pengcheng Dai},
  journal= {arXiv preprint arXiv:2402.16983},
  year   = {2024}
}