Effect of spin-orbit couplings in graphene with and without potential modulation

Kh. Shakouri, M. Ramezani Masir, A. Jellal, E. B. Choubabi, and F. M. Peeters
Phys. Rev. B 88, 115408 – Published 4 September 2013

Abstract

We investigate the effect of Rashba and intrinsic spin-orbit couplings on the electronic properties and spin configurations of Dirac fermions confined in: (i) a flat graphene sheet, (ii) a graphene wire with p-n-p structure, and (iii) a superlattice of graphene wires. The interplay between the spin-orbit interaction mechanisms breaks the electron-hole symmetry and the spin configuration induced by Rashba spin-orbit coupling lacks inversion symmetry in k space. We show that the Rashba spin-orbit interaction doubles the Fabry-Pérot resonant modes in the transmission spectrum of a graphene wire and opens new channels for the electron transmission. Moreover, it leads to the appearance of spin split extra Dirac cones in the energy spectrum of a graphene superlattice. It is shown that the spin of the electrons and holes confined in a flat graphene sheet is always perpendicular to their motion while this is not the case for the other nanostructures.

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  • Received 28 June 2013

DOI:https://doi.org/10.1103/PhysRevB.88.115408

©2013 American Physical Society

Authors & Affiliations

Kh. Shakouri1,*, M. Ramezani Masir1, A. Jellal2,3,4,†, E. B. Choubabi4, and F. M. Peeters1

  • 1Departement Fysica, Universiteit Antwerpen Groenenborgerlaan 171, B-2020 Antwerpen, Belgium
  • 2Saudi Center for Theoretical Physics, Dhahran, Saudi Arabia
  • 3Physics Department, College of Sciences, King Faisal University, P.O. Box 380, Alahssa 31982, Saudi Arabia
  • 4Theoretical Physics Group, Faculty of Sciences, Chouaïb Doukkali University, 24000 El Jadida, Morocco

  • *kh.shakoory@gmail.com
  • a.jellal@ucd.ac.ma

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Issue

Vol. 88, Iss. 11 — 15 September 2013

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