Propagation of few cycle pulses in the array of carbon nanotubes with polymers under the constant magnetic field
Galkina E. N.1, Belonenko M. B.2
1I.M. Sechenov First Moscow State Medical University, Moscow, Russia
2Volgograd State University, Volgograd, Russia
The effect of a constant magnetic field on the behavior of few cycle optical pulses in an array of carbon nanotubes with polymers was studied in this research. The main equation describing the propagation of an electromagnetic field in the medium under consideration was obtained on the basis of Maxwell's equations. The dependences of the optical pulse shape on the concentration of the polymer in the medium are obtained. Keywords: few cycle pulse, cafbon nanotube, magnetic field, polymer.
- Akhmanov S.A., Vysloukhy V.A., Chirikin A.S. Optics of Femtosecond Laser Pulses. NY.: AIP, 1992. 366 p
- Campbell D.K., Flach S., Kivshar Y.S. // Phys. Today. 2004. V. 57. N 1. P. 43-49
- Leblond H., Kremer D., Mihalache D. // Phys. Rev. A. 2009. V. 80. P. 053812
- Goorjian P.M. Photonic switching devices using light bullets, 1997. Patent 5,651,079
- Galkina E.N., Belonenko M.B. // Bull. Russ. Acad. Sci. Phys. 2011. V. 75. N 12. P. 1623
- Belonenko M.B., Lebedev N.G., Galkina E.N., Tuzalina O.J. // Opt. Spectrosc. 2011. V. 110. P. 557
- Galkina E.N., Belonenko M.B., Evdokimov R.A. // Bull. Russ. Acad. Sci. Phys. 2018. V. 82. N 1. P. 17
- Belonenko M.B., Galkina E.N. // Opt. Spectrosc. 2017. V. 123. P. 105
- Konobeeva N.N. // Optik. 2018. V. 157. P. 521
- Arash B., Park H.S., Rabczuk T. // Composites. Part B: Engineering. 2015. V. 80. P. 92
- L. Kin-tak // Chem. Phys. Lett. 2003. P. 399-405
- Konoplev B.G., Ageev O.A., Syurik Yu.V. // Pat. RF 2417891, zayavl. N 2009131991/05 24.08.2009; publ. 10.05.2011, Byul. N 13. (in Russian)
- Ageev O.A., Syurik Yu.V. // Pat. RF 2400462; zayavl. N 2009113378/04, 09.04.2009; publ. 27.09.2010, Byul. N 27. (in Russian)
- Ovchinnikov A.A., Otrazhev V.V. // FTT. 1998. V. 40. N 10. S. 1950. (in Russian)
- Landau L.D., Lifshits E.M. Teoriya polya. M.: Nauka, 1973. 509 p
- Landau L.D., Lifshits E.M. Teoreticheskaya fizika. V. VIII. Elektrodinamika sploshnykh sred. M.: Nauka, 1982. 624 p. (in Russian)
- Fedorov E.G., Zhukov A.V., Bouffanais R., Timashkov A.P., Malomed B.A., Leblond H., Mihalache D., Rosanov N.N., Belonenko M.B. // Phys. Rev. 2018. A 97. 043814
- Harris P.J.F. Carbon Nanotubes and Related Structures: New Materials for the 21st Century. Cambridge: Cambridge University Press, 2009. 301 p
- Bass F.G., Bulgakov A.A., Tetervov A.P. Vysokochastotnye svoystva poluprovodnikov so sverkhreshetkami. M.: Nauka, 1989. 288 p. (in Russian)
- Osipov V.A., Fedyanin V.K. // Soobscheniya OIYaI. Dubna: OIYaI, 1984. 10 p. (in Russian)
- Belonenko M.B., Glazov S.Yu., Meshcheryakova N.E. // Bull. Russ. Acad. Sci. Phys. 2008. V. 72. N 12. P. 1610
- Belonenko M.B., Fedorov E.G. // Phys. Solid State. 2013. V. 55. N 6. P. 1333-1339
- Zhukov A.V., Bouffanais R., Fedorov E.G., Belonenko M.B. // J. Appl. Phys. 2013. V. 114, art. 143106
- Bakhvalov N.S. Chislennye metody. M.: Nauka, 1975. 632 p. (in Russian)
Подсчитывается количество просмотров абстрактов ("html" на диаграммах) и полных версий статей ("pdf"). Просмотры с одинаковых IP-адресов засчитываются, если происходят с интервалом не менее 2-х часов.
Дата начала обработки статистических данных - 27 января 2016 г.