Simple and efficient LCAO basis sets for the diffuse states in carbon nanostructures

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Abstract

We present a simple way to describe the lowest unoccupied diffuse states in carbon nanostructures in density functional theory calculations using a minimal LCAO (linear combination of atomic orbitals) basis set. By comparing plane wave basis calculations, we show how these states can be captured by adding long-range orbitals to the standard LCAO basis sets for the extreme cases of planar sp 2 (graphene) and curved carbon (C60). In particular, using Bessel functions with a long range as additional basis functions retain a minimal basis size. This provides a smaller and simpler atom-centered basis set compared to the standard pseudo-atomic orbitals (PAOs) with multiple polarization orbitals or by adding non-atom-centered states to the basis.

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Papior, N. R., Calogero, G., & Brandbyge, M. (2018). Simple and efficient LCAO basis sets for the diffuse states in carbon nanostructures. Journal of Physics Condensed Matter, 30(25). https://doi.org/10.1088/1361-648X/aac4dd

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