English

Prediction of Magnetic Topological Materials Combining Spin and Magnetic Space Groups

Materials Science 2026-01-09 v1 Strongly Correlated Electrons

Abstract

The scarcity of predicted magnetic topological materials (MTMs) by magnetic space group (MSG) hinders further exploration towards realistic device applications. Here, we propose a new scheme combining spin space groups (SSGs)--approximate symmetry groups neglecting spin-orbit coupling (SOC)--and MSGs to diagnose topology in collinear magnetic materials based on symmetry-indicator theory, enabling a systematic classification of the electronic topology across 484 experimentally synthesized collinear magnets from the MAGNDATA database. This new scheme exploits a symmetry-hierarchy due to SOC induced symmetry-breaking, so that nontrivial band topology can be revealed by SSG, that is yet invisible by the conventional MSG-based method, as exemplified by real triple points in ferromagnetic CaCu3_3Fe2_2Sb2_2O12_{12}, Dirac nodal lines at generic kk-points in antiferromagnetic FePSe3_3 and Weyl nodal lines in altermagnetic Sr4_4Fe4_4O11_{11}. Notably, FePSe3_3 is topologically trivial under MSG but hosts Dirac nodal lines within the SSG framework. Upon including SOC, these nodal lines are gapped and generate a sizable anomalous Hall conductivity. Despite a vanishing bulk net magnetism, FePSe3_3 can host topologically protected surface states with large non-relativistic band spin-splitting. Moreover, topology in MTMs is tunable by rotating the magnetic moment direction once SOC is included, as exemplified in Sr4_4Fe4_4O11_{11}.The interplay of topology with non-relativistic and SOC-induced control of properties via magnetic moment reorientation in the predicted MTMs is worthy of further studies in future.

Keywords

Cite

@article{arxiv.2601.05142,
  title  = {Prediction of Magnetic Topological Materials Combining Spin and Magnetic Space Groups},
  author = {Liangliang Huang and Xiangang Wan and Feng Tang},
  journal= {arXiv preprint arXiv:2601.05142},
  year   = {2026}
}

Comments

One can visit https://box.nju.edu.cn/d/282ea062e24d414cb182/ for Supplementary Materials (SM I.pdf and SM II.pdf)