Title of article :
First principles calculations of the optical properties of CxNy single walled nanotubes
Author/Authors :
Jana, Debnarayan University of Calcutta - University College of Science and Technology - Department of Physics, India , Chakraborti, Anirban Banaras Hindu University - Department of Physics, India , Chakraborti, Anirban Ecole Centrale Paris - Laboratoire de Mathematiques Appliquees aux Systemes, France , Chen, Li-Chyong National Taiwan University - Center for Condensed Matter Sciences, Taiwan , Chen, Chun Wei National Taiwan University - Department of Material Science and Engineering, Taiwan , Chen, Kuei-Hsien Academia Sinica - Institute of Atomic and Molecular Sciences, Taiwan
From page :
1
To page :
12
Abstract :
The optical properties of (8, 0) single walled carbon nanotubes alloyed with nitrogen (N) have been examined using relaxed carbon–carbon (C–C) bond length ab initio density functional theory (DFT) calculations in the long wavelength limit. The maximum value of the absorption coefficient is shown to depend strongly on the concentration of N in a non-linear way as well as on the direction of polarization. The reflectivity at normal incidence vanishes at some unique concentration of N. It is also observed that the peak of the loss function (in parallel polarization and unpolarized cases) shifts to a higher frequency indicating the enhanced metallic character. The observed variation of the plasma resonance frequencies with N concentration indicates the existence of a unique maximum for parallel polarization and a step function like behavior for the unpolarized situation with concentration
Journal title :
Nanotechnology
Journal title :
Nanotechnology
Record number :
2636721
Link To Document :
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