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Spin-orbit–induced spin splittings in polar transition metal dichalcogenide monolayers

Europhysics Letters (EPL) · 2013 · Vol. 102(5) · pp. 57001–57001
Yingchun ChengZhiyong ZhuM. TahirUdo Schwingenschlögl

Abstract

The Rashba effect in quasi two-dimensional materials, such as noble metal surfaces and semiconductor heterostructures, has been investigated extensively, while interest in real two-dimensional systems has just emerged with the discovery of graphene. We present ab initio electronic structure, phonon, and molecular-dynamics calculations to study the structural stability and spin-orbit-induced spin splitting in the transition metal dichalcogenide monolayers MXY (M = Mo, W and X, Y = S, Se, Te). In contrast to the non-polar systems with X = Y, in the polar systems with X ≠ Y the Rashba splitting at the Γ-point for the uppermost valence band is caused by the broken mirror symmetry. An enhancement of the splitting can be achieved by increasing the spin-orbit coupling and/or the potential gradient. © Copyright EPLA, 2013.

2D Materials and ApplicationsGraphene research and applicationsTopological Materials and PhenomenaCondensed matter physicsTransition metalPolarSpin (aerodynamics)MonolayerMaterials scienceSpin–orbit interactionOrbit (dynamics)PhysicsChemistry
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