4.1 Article

Charge transport in carbon nanotubes based materials: a Kubo-Greenwood computational approach

Journal

COMPTES RENDUS PHYSIQUE
Volume 10, Issue 4, Pages 283-296

Publisher

ELSEVIER FRANCE-EDITIONS SCIENTIFIQUES MEDICALES ELSEVIER
DOI: 10.1016/j.crhy.2009.04.003

Keywords

Charge transport; Static and dynamical disorders; Kubo-Greenwood conductance; Localization; Ballistic transport

Funding

  1. French National Research Agency
  2. Alexander Von Humboldt Foundation

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In this contribution, we present a numerical study of quantum transport in carbon nanotubes based materials. After a brief presentation of the computational approach used to investigate the transport coefficient (Kubo method), the scaling properties of quantum conductance in ballistic regime as well as in the diffusive regimes are illustrated. The impact of elastic (impurities) and dynamical disorders (phonon vibrations) are analyzed separately, with the extraction of main transport length scales (mean free path and localization length), as well as the temperature dependence of the nanotube resistance. The results are found in very good agreement with both analytical results and experimental data, demonstrating the predictability efficiency of our computational strategy. To cite this article: H. Ishii et al., C R. Physique 10 (2009). (C) 2009 Academie des sciences. Published by Elsevier Masson SAS. All rights reserved.

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