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Dynamics of a localized ring nonlinear wave in a carbon nanotube
O. E. Glukhovaab, A. P. Chetverikova, V. V. Shunaeva a Institute of Physics, Saratov State University
b I.M. Sechenov First Moscow State Medical University, Institute of Bionic Technology and Engineering, Moscow
Abstract:
The propagation of nonlinear localized soliton-like super-acoustic longitudinal waves in a carbon nanotube was explored by the molecular dynamics modeling. Ring waves were excited by pulsed action on all the atoms of the edge zigzag layer and they got an initial velocity along the axis of the nanotube. It was shown that the velocity of a localized (soliton-like) ring super-acoustic wave increased with an increase in the initial velocity of the edge atoms. The calculated dependence of the propagating wave velocity on the initial velocity of the edge atoms was given.
Keywords:
carbon nanotube, ring nonlinear waves, molecular dynamics.
Received: 01.06.2021 Revised: 20.06.2021 Accepted: 21.06.2021
Citation:
O. E. Glukhova, A. P. Chetverikov, V. V. Shunaev, “Dynamics of a localized ring nonlinear wave in a carbon nanotube”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 47:19 (2021), 15–18
Linking options:
https://www.mathnet.ru/eng/pjtf4662 https://www.mathnet.ru/eng/pjtf/v47/i19/p15
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Abstract page: | 50 | Full-text PDF : | 16 |
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