Multiple Dirac particles in AA-stacked graphite and multilayers of graphene

I. Lobato and B. Partoens
Phys. Rev. B 83, 165429 – Published 21 April 2011

Abstract

Using the tight-binding formalism we show that in the recently experimentally realized AA-stacked graphite in essence two types of massless relativistic Dirac particles are present with a different effective speed of light. We also investigate how the electronic structure evolves from a single graphene sheet into AA-stacked graphite. It is shown that in contrast to AB-stacked graphene layers, the spectrum of AA-stacked graphene layers can be considered as a superposition of single-layer spectra and only particles with a linear spectrum at the Fermi energy around the K point are present. From the evolution of the band overlap we show that 6 multilayers of AA-stacked graphene already behave as AA-stacked graphite. The evolution of the effective speeds of light of the Dirac particles to their bulk values shows exactly the same behavior. The tight-binding parameters we use to describe AA-stacked graphite and multilayers of graphene are obtained by ab initio calculations.

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  • Received 19 April 2010

DOI:https://doi.org/10.1103/PhysRevB.83.165429

©2011 American Physical Society

Authors & Affiliations

I. Lobato and B. Partoens*

  • University of Antwerp, Department of Physics, Groenenborgerlaan 171, B-2020 Antwerp, Belgium

  • *bart.partoens@ua.ac.be

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Vol. 83, Iss. 16 — 15 April 2011

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