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Tunable Giant Rashba-type Spin Splitting in PtSe$_2$/MoSe$_2$ Heterostructure

Materials Science 2020-01-08 v3

Abstract

We report a giant Rashba-type spin splitting in two-dimensional heterostructure PtSe2_2/MoSe2_2 with first-principles calculations. We obtain a large value of spin splitting energy 110 meV at the momentum offset k0k_0=0.23 \AA1^{-1} around Γ\mathrm{\Gamma} point, arising from the emerging strong interfacial spin-orbital coupling induced by the hybridization between PtSe2_2 and MoSe2_2. Moreover, we find that the band dispersion close to valence band maximum around Γ\Gamma point can be well approximated by the generalized Rashba Hamiltonian H(k)=2k22m+ck+αRσ(k×z)H(k_{||})=-\frac{\hbar^2 k_{||}^2}{2m}+c k_{||}+\alpha_R \vec{\sigma}\cdot(\vec{k}_{||} \times \vec{z}). It is found that the generalized Rashba constant ηR=c+αR\eta_R=c+\alpha_R in PtSe2_2/MoSe2_2 is as large as 1.3 eVA˚\cdot\text{\AA}, and importantly ηR\eta_R 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 K/K\mathrm{K}/\mathrm{K}' points in monolayer MoSe2_2, we propose a promising model for spin field-effect transistor with opto-valleytronic spin injection based on PtSe2_2/MoSe2_2 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

R2 v1 2026-06-23T10:50:44.141Z