English

Topological Weyl-like Phonons and Nodal Line Phonons in Graphene

Mesoscale and Nanoscale Physics 2019-07-22 v1 Materials Science

Abstract

By means of first-principles calculations and modeling analysis, we have predicted that the traditional 2D-graphene hosts the topological phononic Weyl-like points (PWs) and phononic nodal line (PNL) in its phonon spectrum. The phonon dispersion of graphene hosts three type-I PWs (both PW1 and PW2 at the BZ corners \emph{K} and \emph{K}', and PW3 locating along the Γ\Gamma-\emph{K} line), one type-II PW4 locating along the Γ\Gamma-\emph{M} line, and one PNL surrounding the centered Γ\Gamma point in the qx,yq_{x,y} plane. The calculations further reveal that Berry curvatures are vanishingly zero throughout the whole BZ, except for the positions of these four pairs of Weyl-like phonons, at which the non-zero singular Berry curvatures appear with the Berry phase of π\pi or -π\pi, confirming its topological non-trivial nature. The topologically protected non-trivial phononic edge states have been also evidenced along both the zigzag-edged and armchair-edged boundaries. These results would pave the ways for further studies of topological phononic properties of graphene, such as phononic destructive interference with a suppression of backscattering and intrinsic phononic quantum Hall-like effects.

Keywords

Cite

@article{arxiv.1907.08547,
  title  = {Topological Weyl-like Phonons and Nodal Line Phonons in Graphene},
  author = {Jiangxu Li and Lei Wang and Jiaxi Liu and Ronghan Li and Zhenyu Zhang and Xing-Qiu Chen},
  journal= {arXiv preprint arXiv:1907.08547},
  year   = {2019}
}

Comments

5 pages, 4 figures