English

Spin photogalvanic effect in two-dimensional collinear antiferromagnets

Materials Science 2021-04-19 v1

Abstract

Spin photogalvanic effect (SPGE) is an efficient method to generate a spin current by photoexcitation in a contactless and ultra-fast way. In two-dimensional (2D) collinear antiferromagnetic (AFM) materials that preserve the combined time-reversal (T) and inversion (I) symmetry (i.e., TI symmetry), we find that the photogalvanic currents in two magnetic sublattices carry different kinds of spins and propagate in opposite direction if the spin-orbit coupling is negligible, resulting in a pure spin current without net charge current. Based on the first-principles calculations, we show that two experimentally synthesized 2D collinear AFM materials, monolayer MnPS3_3 and bilayer CrCl3_3, host the required symmetry and support sizable SPGE. The predicted SPGE in 2D collinear AFM materials makes them promising platforms for nano spintronics devices.

Keywords

Cite

@article{arxiv.2009.02748,
  title  = {Spin photogalvanic effect in two-dimensional collinear antiferromagnets},
  author = {Rui-Chun Xiao and Ding-Fu Shao and Yu-Hang Li and Hua Jiang},
  journal= {arXiv preprint arXiv:2009.02748},
  year   = {2021}
}
R2 v1 2026-06-23T18:20:42.508Z