English

A possible way to achieve anomalous valley Hall effect by piezoelectric effect in $\mathrm{GdCl_2}$ monolayer

Materials Science 2022-01-05 v1 Mesoscale and Nanoscale Physics

Abstract

Ferrovalley materials can achieve manipulation of the valley degree of freedom with intrinsic spontaneous valley polarization introduced by their intrinsic ferromagnetism. A good ferrovalley material should possess perpendicular magnetic anisotropy (PMA), valence band maximum (VBM)/conduction band minimum (CBM) at valley points, strong ferromagnetic (FM) coupling and proper valley splitting. In this work, the monolayer GdCl2\mathrm{GdCl_2} is proposed as a potential candidate material for valleytronic applications by the first-principles calculations. It is proved that monolayer GdCl2\mathrm{GdCl_2} is a FM semiconductor with the easy axis along out of plane direction and strong FM coupling. A spontaneous valley polarization with a valley splitting of 42.3 meV is produced due to its intrinsic ferromagnetism and spin orbital coupling (SOC). Although the VBM of unstrained monolayer GdCl2\mathrm{GdCl_2} is away from valley points, a very small compressive strain (about 1\%) can make VBM move to valley points. We propose a possible way to realize anomalous valley Hall effect in monolayer GdCl2\mathrm{GdCl_2} by piezoelectric effect, not an external electric field, namely piezoelectric anomalous valley Hall effect (PAVHE). This phenomenon could be classified as piezo-valleytronics, being similar to piezotronics and piezophototronics. The only independent piezoelectric strain coefficient d11d_{11} is -2.708 pm/V, which is comparable to one of classical bulk piezoelectric material α\alpha-quartz (d11d_{11}=2.3 pm/V). The biaxial in-plane strain and electronic correlation effects are considered to confirm the reliability of our results. Finally, the monolayer GdF2\mathrm{GdF_2} is predicted to be a ferrovalley material with dynamic and mechanical stabilities, PMA, VBM at valley points, strong FM coupling, valley splitting of 47.6 meV, and d11d_{11} of 0.584 pm/V.

Keywords

Cite

@article{arxiv.2109.13534,
  title  = {A possible way to achieve anomalous valley Hall effect by piezoelectric effect in $\mathrm{GdCl_2}$ monolayer},
  author = {San-Dong Guo and Jing-Xin Zhu and Wen-Qi Mu and Bang-Gui Liu},
  journal= {arXiv preprint arXiv:2109.13534},
  year   = {2022}
}

Comments

10 pages, 12 figures