English

Weyl magnons in breathing pyrochlore antiferromagnets

Strongly Correlated Electrons 2018-10-08 v2

Abstract

Frustrated quantum magnets not only provide exotic ground states and unusual magnetic structures, but also support unconventional excitations in many cases. Using a physically relevant spin model for a breathing pyrochlore lattice, we discuss the presence of topological linear band crossings of magnons in antiferromagnets. These are the analogs of Weyl fermions in electronic systems, which we dub Weyl magnons. The bulk Weyl magnon implies the presence of chiral magnon surface states forming arcs at finite energy. We argue that such antiferromagnets present a unique example in which Weyl points can be manipulated in situ in the laboratory by applied fields. We discuss their appearance specifically in the breathing pyrochlore lattice, and give some general discussion of conditions to find Weyl magnons and how they may be probed experimentally. Our work may inspire a re-examination of the magnetic excitations in many magnetically ordered systems.

Keywords

Cite

@article{arxiv.1602.04288,
  title  = {Weyl magnons in breathing pyrochlore antiferromagnets},
  author = {Fei-Ye Li and Yao-Dong Li and Yong Baek Kim and Leon Balents and Yue Yu and Gang Chen},
  journal= {arXiv preprint arXiv:1602.04288},
  year   = {2018}
}

Comments

To appear in Nature Communications. Update title and abstract. The footnotes are removed due to the editorial policy, but can be found in the early version