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Zhurnal Tekhnicheskoi Fiziki, 2023 Volume 93, Issue 4, Pages 458–462 (Mi jtf6968)

10th International Symposium on Optics and Biophotonics September 26-30, 2022, Saratov, Russia
Atomic and molecular physics

Propagation of supersonic soliton in carbon nanotubes of armchair type

V. V. Shunaev, A. P. Chetverikov, O. E. Glukhova

Department of Physics, Saratov Chernyshevsky State University, Saratov, Russia

Abstract: The propagation of a localized ring nonlinear wave in carbon nanotubes (CNTs) of armchair type has been explored using the MD/DFTB method. It is unambiguously shown that the considered localized waves are soliton- type. Herewith, the higher a velocity of an initial perturbation, the higher a steady-state velocity of the considered soliton. It is established that at a high initial excitation energy in a time period of 0.1–0.2 ps the soliton moves at the speed in the range of 245–270$\mathring{\mathrm{A}}$/ps, which is approximately in 1.22–1.35 times higher than the speed of sound in CNTs (200$\mathring{\mathrm{A}}$/ps). It is shown that the soliton velocity practically does not change with increasing CNT radius

Keywords: molecular dynamics, carbon nanotubes, soliton, supersonic wave.

Received: 23.12.2022
Revised: 23.12.2022
Accepted: 23.12.2022

DOI: 10.21883/JTF.2023.04.55032.286-22



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© Steklov Math. Inst. of RAS, 2025