Ultrashort Plasmonic Pulse in Carbon Nanotube
Dzedolik I. V. 1, Lyashko A. D. 1
1V. I. Vernadsky Crimean Federal University, Physics and Technology Institute, Simferopol, Russia
Email: igor.dzedolik@cfuv.ru, knightla@yandex.ru

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The dynamics of plasmonic modes excited in a carbon nanotube by an ultrashort electromagnetic pulse is theoretically investigated. The obtained nonlinear differential equations describe the interaction of the exciting electromagnetic pulse and conduction electrons in the carbon nanotube during the propagation of the plasmonic pulse along its axis. It is shown that the exciting electromagnetic pulse with the Gaussian envelope is transformed into a plasmonic cnoidal wave or a plasmonic soliton depending on the ratio of the electromagnetic pulse parameters and the carbon nanotube parameters. Keywords: carbon nanotube, ultrashort plasmonic pulse, cnoidal wave, kink, soliton.
  1. D.Y. Yao, P.H. He, H.C. Zhang, J.W. Zhu, M. Hu, T.J. Cui. Prog. Electromag. Res., 175, 105 (2022). DOI: 10.2528/PIER22060501
  2. T.J. Davis, D.E. Gomez, A. Roberts. 6 (3), 543 (2017). DOI: 10.1515/nanoph-2016-0131
  3. S.A. Maksimenko, G.Ya. Slepyan. In: Fundamental'nye i prikladnye fizicheskie issledovaniya 1986--2001 gg. Ed. by V.G. Baryshevskii (Beloruss. Gos. Univ., Minsk, 2001), pp. 87--118 (in Russian)
  4. M.B. Belonenko, E.V. Demushkina, N.G. Lebedev. Phys. Solid State, 50 (2), 383 (2008)
  5. M.B. Belonenko, N.G. Lebedev, E.V. Sochneva. Phys. Solid State, 53 (1), 209 (2011)
  6. A.M. Belonenko, I.S. Dvuzhilov, Yu.V. Dvuzhilova, M.B. Belonenko. Opt. Spectrosc., 130 (3), 342 (2022). DOI: 10.21883/OS.2022.03.52170.2642-21
  7. I.V. Dzedolik, A.Yu. Leksin. J. Opt., 22 (7), 075001 (2020). DOI: 10.1088/2040-8986/ab9511
  8. I.V. Dzedolik. Bull. Russ. Acad. Sci.: Phys., 85 (1), 1 (2021). DOI: 10.31857/S0367676521010105
  9. J.R. Salgueiro, A. Ferrando. Opt. Lett., 47 (19), 5136 (2022). DOI: 10.1364/OL.472269
  10. I.V. Dzedolik. Bull. Russ. Acad. Sci.: Phys., 86 (2), 175 (2022). DOI: 10.31857/S0367676522020090
  11. I.V. Dzedolik, T.A. Mikhailova, S.V. Tomilin. Plazmonika mikro- i nanostruktur. Ot teorii k eksperimentu (POLIPRINT, Simferopol', 2022) (in Russian)
  12. S.A. Maier. Plasmonics: Fundamentals and Applications (Springer, 2007)
  13. R. Saito, M. Fujita, G. Dresselhaus, M.S. Dresselhaus. Appl. Phys. Lett., 60 (18), 2204 (1992). DOI: 10.1063/1.107080
  14. T. Ando. J. Phys. Soc. Japan, 74 (3), 777 (2005). DOI: 10.1143/JPSJ.74.777
  15. Yu.E. Lozovik, S.P. Merkulova, A.A. Sokolik. Usp. Fiz. Nauk, 178 (7), 757 (2008). DOI: 10.3367/UFNr.0178.200807h.0757
  16. A.H. Castro Neto, F. Guinea, N.M.R. Peres, K.S. Novoselov, A.K. Geim. Rev. Modern Phys., 81 (1), 109 (2009). DOI: 10.1103/RevModPhys.81.109
  17. M. Jung, G. Shvets. Adv. Photon., 5 (2), 026004 (2023). DOI: 10.1117/1.AP.5.2.026004
  18. I.V. Dzedolik, S.V. Tomilin, S.N. Polulyakh, B.M. Yakubenko. St. Petersburg State Polytech. Univ. J. Phys. Math., 16 (3.1), 163 (2023). DOI: 10.18721/JPM.163.129
  19. L.I. Magarill, M.V. Entin. J. Exp. Theor. Phys., 96 (4), 766 (2003)
  20. M.S. Dresselhaus, G. Dresselhaus, P. Avouris. Carbon nanotubes: synthesis, structure, properties, and application (Springer-Verlag, 2000)
  21. P.R. Wallace. Phys. Rev., 71 (9), 622 (1947). DOI: 10.1103/PhysRev.71.622
  22. L.D. Landau, E.M. Lifshitz. Fizicheskaya kinetika (Fizmatlit, M., 2002) (in Russian)
  23. H.B. Dwight. Tables of Integrals and Other Mathematical Data (Macmillan, New York, 1961).

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