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JOURNALS // Matematicheskoe modelirovanie // Archive

Matem. Mod., 2018 Volume 30, Number 9, Pages 100–110 (Mi mm4004)

Simulation of the process of carbon nanotubes system self-organization

A. A. Knizhnika, I. A. Iudintsevb

a Kintech Lab Ltd
b Moscow Institute of Physics and Technology

Abstract: In this work we developed a coarse grained numerical model for simulation of a selforganization process of carbon nanotubes system under applied electric field. The model describes polarization of nanotubes in the system with electric field and also includes Van der Waals interaction between nanotubes. We developed an iterative algorithm of particle charge calculation in nanotube that provides a significant speedup of the calculation. Another advantage of this algorithm is better scaling of the calculation time as a function of system size. The results of the model application for calculation of selforganization process dynamics of carbon nanotubes are demonstrated.

Keywords: coarse grained modeling, coulomb interaction, self-organization, carbon nanotubes.

Received: 05.09.2017


 English version:
Mathematical Models and Computer Simulations, 2019, 11:3, 393–399


© Steklov Math. Inst. of RAS, 2024