Tunable Giant Rashba-type Spin Splitting in PtSe$_2$/MoSe$_2$ Heterostructure
Abstract
We report a giant Rashba-type spin splitting in two-dimensional heterostructure PtSe/MoSe with first-principles calculations. We obtain a large value of spin splitting energy 110 meV at the momentum offset =0.23 \AA around point, arising from the emerging strong interfacial spin-orbital coupling induced by the hybridization between PtSe and MoSe. Moreover, we find that the band dispersion close to valence band maximum around point can be well approximated by the generalized Rashba Hamiltonian . It is found that the generalized Rashba constant in PtSe/MoSe is as large as 1.3 eV, and importantly can be effectively tuned by biaxial strain and external out-of-plane electrical field, presenting a potential application for the spin field-effect transistor. In addition, with the spin-valley physics at points in monolayer MoSe, we propose a promising model for spin field-effect transistor with opto-valleytronic spin injection based on PtSe/MoSe heterostructure.
Keywords
Cite
@article{arxiv.1908.06689,
title = {Tunable Giant Rashba-type Spin Splitting in PtSe$_2$/MoSe$_2$ Heterostructure},
author = {Longjun Xiang and Youqi Ke and Qingyun Zhang},
journal= {arXiv preprint arXiv:1908.06689},
year = {2020}
}
Comments
Major changes have been made to the manuscript, including proposing a generalized Rashba Hamiltonian, modifying Fig. 3, changing the discussion of proposed SFET device, adding results to the supplementary materials, and so on