arXiv · 1710.09509
Two-dimensional Square Buckled Rashba Lead Chalcogenides
Abstract
We propose the lead sulphide (PbS) monolayer as a 2D semiconductor with a large Rashba-like spin-orbit effect controlled by the out-of-plane buckling. The buckled PbS conduction band is found to possess Rashba-like dispersion and spin texture at the $M$ and $Γ$ points, with large effective Rashba parameters of $λ\sim5~$eV$Å~$ and $λ\sim1~$eV$~Å$, respectively. Using a tight-binding formalism, we show that the Rashba effect originates from the very large spin-orbit interaction and the hopping term that mixes the in-plane and out-of-plane $p$ orbitals of Pb and S atoms. The latter, which depends on the buckling angle, can be controlled by applying strain to vary the spin texture as well as the Rashba parameter at $Γ$ and $M$. Our density functional theory results together with tight-binding formalism provide a unifying framework for designing Rashba monolayers and for manipulating their spin properties.
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Paul Z. Hanakata, A. S. Rodin, Alexandra Carvalho, Harold S. Park, David K. Campbell, A. H. Castro Neto. 2017-10-26. Two-dimensional Square Buckled Rashba Lead Chalcogenides. https://doi.org/10.1103/physrevb.96.161401
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