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Please use this identifier to cite or link to this item: https://elib.bsu.by/handle/123456789/254006
Title: Clustering Artificial Atoms Induced by High-Frequency Electromagnetic Radiation in Graphene Monolayers of Multiwalled Carbon Nanotubes
Authors: Grushevskaya, H. V.
Timoshchenko, A. I.
Avdanina, E. A.
Lipnevich, I. V.
Keywords: ЭБ БГУ::ЕСТЕСТВЕННЫЕ И ТОЧНЫЕ НАУКИ::Физика
Issue Date: 2020
Citation: Int. J. Nonlinear Phenomena in Complex Systems, vol. 23, no. 3 (2020), pp. 342 – 356
Abstract: A graphene-charge carrier confinement induced by high-frequency photons and a subsequent clustering of artificial atoms in graphene plane have been studied using electrophysical and Raman-spectroscopy methods. To fabricate the graphene n-p-n junctions, commensurable superlattice structures consisting of multi-walled carbon nanotubes (MWCNTs) have been formed utilizing a Langmuir-Blodgett technique. It has been shown that the p-n graphene junctions are sensitive to graphene lattice-deformation defects only. The levels of graphene defect do not host impurity electrons. One offers a mechanism of graphene monolayer self-repairing after a radiation damage. This mechanism is based on an existence of topologically protected Compton scatterers in graphene plane.
URI: https://elib.bsu.by/handle/123456789/254006
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