arXiv Open Access 2022

Two-dimensional anisotropic Dirac materials PtN4C2 and Pt2N8C6 with quantum spin and valley Hall effects

Jingping Dong Chuhan Wang Xinlei Zhao Miao Gao Xun-Wang Yan +2 lainnya
Lihat Sumber

Abstrak

We propose two novel two-dimensional topological Dirac materials, planar PtN4C2 and Pt2N8C6, which exhibit graphene-like electronic structures with linearly dispersive Dirac-cone states exactly at the Fermi level. Moreover, the Dirac cone is anisotropic, resulting in anisotropic Fermi velocities and making it possible to realize orientation-dependent quantum devices. Using the first-principles electronic structure calculations, we have systemically studied the structural, electronic, and topological properties. We find that spin-orbit coupling opens a sizable topological band gap so that the materials can be classified as quantum spin Hall insulators as well as quantum valley Hall insulators. Helical edge states that reside in the insulating band gap connecting the bulk conduction and valence bands are observed. Our work not only expands the Dirac cone material family, but also provides a new avenue to searching for more two-dimensional topological quantum spin and valley Hall insulators.

Penulis (7)

J

Jingping Dong

C

Chuhan Wang

X

Xinlei Zhao

M

Miao Gao

X

Xun-Wang Yan

F

Fengjie Ma

Z

Zhong-Yi Lu

Format Sitasi

Dong, J., Wang, C., Zhao, X., Gao, M., Yan, X., Ma, F. et al. (2022). Two-dimensional anisotropic Dirac materials PtN4C2 and Pt2N8C6 with quantum spin and valley Hall effects. https://arxiv.org/abs/2207.03703

Akses Cepat

Lihat di Sumber
Informasi Jurnal
Tahun Terbit
2022
Bahasa
en
Sumber Database
arXiv
Akses
Open Access ✓