Modeling of two-dimensional light bullets propagation in an array of carbon nanotubes taking into account the mechanical tension and magnetic field
Matematičeskaâ fizika i kompʹûternoe modelirovanie, Tome 23 (2020) no. 3, pp. 36-44.

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In this paper, we study the influence of acoustic and magnetic fields on the propagation of the two-dimensional light bullet in an array of carbon nanotubes. The acoustic field is taken into account in the framework of the gauge theory. A magnetic field is applied along the nanotube axis and leads to a change in the electronic spectrum of $\pi$-electrons. It is shown that the pulse stably pro-pagates in the medium, taking into account both of these factors. In this case, themagnetic field and tension slow down the pulse, as well as change its amplitude.
Keywords: localized pulses, gauge theory, magnetic flux, acoustic field
Mots-clés : carbon nanotubes.
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     author = {N. N. Konobeeva and D. S. Skvortsov},
     title = {Modeling of two-dimensional light bullets propagation in an array of carbon nanotubes taking into account the mechanical tension and magnetic field},
     journal = {Matemati\v{c}eska\^a fizika i kompʹ\^uternoe modelirovanie},
     pages = {36--44},
     publisher = {mathdoc},
     volume = {23},
     number = {3},
     year = {2020},
     language = {en},
     url = {http://geodesic.mathdoc.fr/item/VVGUM_2020_23_3_a3/}
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N. N. Konobeeva; D. S. Skvortsov. Modeling of two-dimensional light bullets propagation in an array of carbon nanotubes taking into account the mechanical tension and magnetic field. Matematičeskaâ fizika i kompʹûternoe modelirovanie, Tome 23 (2020) no. 3, pp. 36-44. http://geodesic.mathdoc.fr/item/VVGUM_2020_23_3_a3/