English

Spin-dependent Refraction at the Atomic Step of Transition-metal Dichalcogenides

Mesoscale and Nanoscale Physics 2015-05-27 v1

Abstract

We theoretically propose a novel spin-dependent electronic transport mechanism in which the spin-unpolarized electron beam is split into different directions depending on spins at an atomic domain boundary in non-magnetic material. Specifically, we calculate the electronic transmission across a boundary between monolayer and bilayer of the transition metal dichalcogenide, and demonstrate that up-spin and down-spin electrons entering the boundary are refracted and collimated to opposite directions. The phenomenon is attributed to the strong spin-orbit interaction, the trigonally-warped Fermi surface, and the different crystal symmetries between the monolayer and bilayer systems. The spin-dependent refraction suggests a potential application for a spin splitter, which spatially separates up-spin and down-spin electrons simply by passing the electric current through the boundary.

Keywords

Cite

@article{arxiv.1411.3088,
  title  = {Spin-dependent Refraction at the Atomic Step of Transition-metal Dichalcogenides},
  author = {Tetsuro Habe and Mikito Koshino},
  journal= {arXiv preprint arXiv:1411.3088},
  year   = {2015}
}

Comments

6 pages, 6 figures