English

Piezoelectric Manipulation and Engineering for Layertronics in Two-Dimensional Materials

Mesoscale and Nanoscale Physics 2024-10-22 v1 Materials Science Applied Physics

Abstract

The electronic transport characteristics of two-dimensional (2D) systems have widespread application prospects in the fabrication of multifunctional nanodevices. However, the current research for basic transport phenomena, such as anomalous valley Hall effect (AVHE) and piezoelectric response, is limited to discrete discussion. Here, we theoretically propose a valley-piezoelectricity coupling strategy beyond the existing paradigm to realize AVHE and layer Hall effect (LHE) in ferrovalley (FV) systems, and its essential principle can be extended to general valleytronic materials. Through first-principles calculations, we demonstrate that the large polarized electric field of 2.8*106 (1.67*107) V/m can be induced by 0.1% uniaxial strain in FV 2H-LaHF (1T-LaHF) monolayers. In addition, the microscopic mechanism of interlayer antiferromagnetic (AFM) state of 2H-LaHF bilayer is uncovered by the spin Hamiltonian and super-superexchange (SSE) interaction. Our findings pave the way for new explorations of valley Hall-related effect involving piezoelectricity.

Keywords

Cite

@article{arxiv.2410.15779,
  title  = {Piezoelectric Manipulation and Engineering for Layertronics in Two-Dimensional Materials},
  author = {Jianke Tian and Jia Li and Hengbo Liu and Yan Li and Ze Liu and Linyang Li and Jun Li and Guodong Liu and Junjie Shi},
  journal= {arXiv preprint arXiv:2410.15779},
  year   = {2024}
}
R2 v1 2026-06-28T19:29:20.243Z