English

Photoninduced Weyl half-metal phase and spin filter effect from topological Dirac semimetals

Mesoscale and Nanoscale Physics 2019-11-20 v1

Abstract

Recently discovered Dirac semimetals (DSMs) with two Dirac nodes, such as Na3_{3}Bi and Cd2_{2}As3_{3}, are regarded to carry the Z2\mathbb{Z}_{2} topological charge in addition to the chiral charge. Here, we study the Floquet phase transition of Z2\mathbb{Z}_{2} topological DSMs subjected to a beam of circularly polarized light. Due to the resulting interplay of the chiral and Z2\mathbb{Z}_{2} charges, the Weyl nodes are not only chirality-dependent but also spin-dependent, which constrains the behaviors in creation and annihilation of the Weyl nodes in pair. Interestingly, we find a novel phase: One spinband is in Weyl semimetal phase while the other spinband is in insulator phase, and we dub it Weyl half-metal (WHM) phase. We further study the spin-dependent transport in a Dirac-Weyl semimetal junction and find a spin filter effect as a fingerprint of existence of the WHM phase. The proposed spin filter effect, based on the WHM bulk band, is highly tunable in a broad parameter regime and robust against magnetic disorder, which is expected to overcome the shortcomings of the previously proposed spin filter based on the topological edge/surface states. Our results offer a unique opportunity to explore the potential applications of topological DSMs in spintronics.

Keywords

Cite

@article{arxiv.1910.06178,
  title  = {Photoninduced Weyl half-metal phase and spin filter effect from topological Dirac semimetals},
  author = {Xiao-Shi Li and Chen Wang and Ming-Xun Deng and Hou-Jian Duan and Pei-Hao Fu and Rui-Qiang Wang and L. Sheng and D. Y. Xing},
  journal= {arXiv preprint arXiv:1910.06178},
  year   = {2019}
}

Comments

6 pages, 4 figures