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Effect of a charged particle propagating in C60 fullerite A. M. Bubenchikov, M. A. Bubenchikov, A. V. Lun-Fu, V. A. Ovchinnikov

Contributor(s): Bubenchikov, Alexey M | Bubenchikov, Mikhail A | Lun-Fu, Aleksandr V | Ovchinnikov, Vyacheslav AMaterial type: ArticleArticleContent type: Текст Media type: электронный Subject(s): фуллериты | фуллерены | математические модели | Эйлера подходGenre/Form: статьи в журналах Online resources: Click here to access online In: Fullerenes, nanotubes, and carbon nanostructures Vol. 29, № 6. P. 442-445Abstract: The interaction of a charged particle and a rotating fullerene molecule in a fullerite crystal is investigated. The mathematical model was constructed and implemented for fullerene rotation frequencies up to 1014Hz and velocities of an incident charged particle of the order of 103m s1. The study was carried out using the methods of classical molecular physics. The characteristics of the motion of the C 60 fullerene molecule were determined using the laws of classical mechanics, Euler ’ s approach, and a step-by-step numerical method of a high order of accuracy. The influence of the action of a charged particle on the nature of the motion of a rotating fullerene was analyzed according to the results of the performed numerical experiments.
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The interaction of a charged particle and a rotating fullerene molecule in a fullerite crystal is investigated. The mathematical model was constructed and implemented for fullerene rotation frequencies up to 1014Hz and velocities of an incident charged particle of the order of 103m s1. The study was carried out using the methods of classical molecular physics. The characteristics of the motion of the C 60 fullerene molecule were determined using the laws of classical mechanics, Euler ’ s approach, and a step-by-step numerical method of a high order of accuracy. The influence of the action of a charged particle on the nature of the motion of a rotating fullerene was analyzed according to the results of the performed numerical experiments.

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