4.5 Article Proceedings Paper

Static polarizability of carbon nanotubes: ab initio independent-particle calculations

Journal

COMPUTATIONAL MATERIALS SCIENCE
Volume 30, Issue 3-4, Pages 269-273

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.commatsci.2004.02.021

Keywords

carbon nanotubes; polarizability; ab initio calculation

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An ab initio study of the static polarizability of the carbon nanotubes within density functional theory in local density and independent-particle approximations has been performed. Full-potential projected augmented wave method was used. Specifically, the static dielectric function epsilon(0) and electric polarizability alpha(0) of a number of the armchair [(3,3),(5,5),(10,10),(15,15),(20,20)], zigzag [(5,0),(10,0),(15,0),(16,0),(20,0)] and chiral [(4,2),(6,2),(6,4),(8,4), (10,5)] carbon nanotubes have been calculated. The underlying atomic structure of the carbon nanotubes was determined theoretically. The calculated static polarizability alpha(0) for the nanotubes is rather anisotropic with alpha(0) for electric field parallel to the tube axis (Eparallel to(z) over cap) being two to three times larger than that for electric field perpendicular to the tube axis (E perpendicular to (z) over cap). This anisotropy is further enhanced by up to a factor of five when the depolarization effects for E perpendicular to (z) over cap is taken into account by a classical correction. For both electric field polarizations, alpha(0) is roughly proportional to the square of the tube diameter, suggesting that it is independent of the chirality and the details of the electronic structure of the nanotubes. (C) 2004 Elsevier B.V. All rights reserved.

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