English

Triple hourglass Weyl phonons

Materials Science 2022-12-28 v1 Mesoscale and Nanoscale Physics

Abstract

Unconventional Weyl phonons with higher topological charges in crystalline solids have attracted increasing attention. By symmetry analysis and low-energy k.pk.p effective Hamiltonian, we propose the symmetry enforced triple hourglass Weyl phonons (THWPs) with Chern number C\mathcal C = ±\pm 3 protected by 636_3 screw rotation symmetry in chiral space groups 173 (P63P6_3) and 182 (P6322P6_322). We take LiIO3_3 with space group 173 as a candidate and confirm that it possesses THWP with linear and quadratic dispersions along the kzk_z direction and in the kxk_x-kyk_y plane, respectively. Due to the constraints of crystal symmetry and topological charge conservation, six equivalent single Weyl phonons (SWPs) emerge and lie in the kzk_z = 0 plane. Therefore, the unique phonon surface arcs connect the projections of two THWPs and six SWPs, leading to nontrivial sextuple-helicoid surface arcs on the (001) surface Brillouin zone. Our work proposes a class of topological phonons and realizes it in realistic materials, providing a perfect platform for experimental observation of THWPs. We expect our work to provide a new idea for detection of unconventional quasiparticles.

Keywords

Cite

@article{arxiv.2211.02845,
  title  = {Triple hourglass Weyl phonons},
  author = {Guang Liu and Zhongjia Chen and Peng Wu and Hu Xu},
  journal= {arXiv preprint arXiv:2211.02845},
  year   = {2022}
}

Comments

11 pages, 7 figures

R2 v1 2026-06-28T05:14:31.699Z