Magnetic Field Effect on Ultrashort Two-dimensional Optical Pulse Propagation in Silicon Nanotubes
- Autores: Konobeeva N.N.1, Evdokimov R.A.2, Belonenko M.B.1,3
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Afiliações:
- Volgograd State University
- Volgograd State Agrarian University
- Volgograd Institute of Business
- Edição: Volume 61, Nº 1 (2018)
- Páginas: 157-161
- Seção: Physics of Magnetic Phenomena
- URL: https://ogarev-online.ru/1064-8887/article/view/240084
- DOI: https://doi.org/10.1007/s11182-018-1379-5
- ID: 240084
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Resumo
The paper deals with the magnetic field effect which provides a stable propagation of ultrashort pulses in silicon nanotubes from the viewpoint of their waveform. The equation is derived for the electromagnetic field observed in silicon nanotubes with a glance to the magnetic field for two-dimensional optical pulses. The analysis is given to the dependence between the waveform of ultrashort optical pulses and the magnetic flux passing through the cross-sectional area of the nanotube.
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Sobre autores
N. Konobeeva
Volgograd State University
Autor responsável pela correspondência
Email: yana_nn@inbox.ru
Rússia, Volgograd
R. Evdokimov
Volgograd State Agrarian University
Email: yana_nn@inbox.ru
Rússia, Volgograd
M. Belonenko
Volgograd State University; Volgograd Institute of Business
Email: yana_nn@inbox.ru
Rússia, Volgograd; Volgograd
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