Afanas’ev S. A.
1, Zaitsev V. A.
1, Moiseev S. G.
1,2, Rozhleys I. A.
1, Sannikov D. G.
1, Tertyshnikova G. V.
11Ulyanovsk State University, Ulyanovsk, Russia
2Kotel’nikov Institute of Radio Engineering and Electronics (Ulyanovsk Branch), Russian Academy of Sciences, Ulyanovsk, Russia
Email: asa_rpe@mail.ru, serg-moiseev@yandex.ru, sannikov-dg@yandex.ru
The dispersion characteristics of surface plasmon polaritons in double-walled carbon nanotubes have been studied, taking into account ohmic losses. A dispersion equation in matrix form is obtained for the surface plasmon polaritons, taking into account the anisotropy of the electrical conductivity of nanotube walls. Its numerical solutions are found for low-order plasmonic modes propagating over a wide frequency range (including THz and visible range). It was found that for double-walled carbon nanotubes of sufficiently large radii, the surface plasmon polaritons deceleration coefficient can exceed 300. Keywords: carbon nanotube, surface plasmon polaritons.
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