Nonlinear propagation of vector extremely short pulses in a medium of symmetric and asymmetric molecules
- Authors: Sazonov S.V.1, Ustinov N.V.2
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Affiliations:
- National Research Centre “Kurchatov Institute,”
- Kaliningrad Branch
- Issue: Vol 124, No 2 (2017)
- Pages: 213-230
- Section: Atoms, Molecules, Optics
- URL: https://journals.rcsi.science/1063-7761/article/view/191888
- DOI: https://doi.org/10.1134/S1063776117010150
- ID: 191888
Cite item
Abstract
The nonlinear propagation of extremely short electromagnetic pulses in a medium of symmetric and asymmetric molecules placed in static magnetic and electric fields is theoretically studied. Asymmetric molecules differ in that they have nonzero permanent dipole moments in stationary quantum states. A system of wave equations is derived for the ordinary and extraordinary components of pulses. It is shown that this system can be reduced in some cases to a system of coupled Ostrovsky equations and to the equation intagrable by the method for an inverse scattering transformation, including the vector version of the Ostrovsky–Vakhnenko equation. Different types of solutions of this system are considered. Only solutions representing the superposition of periodic solutions are single-valued, whereas soliton and breather solutions are multivalued.
About the authors
S. V. Sazonov
National Research Centre “Kurchatov Institute,”
Author for correspondence.
Email: sazonov.sergey@gmail.com
Russian Federation, Moscow, 123182
N. V. Ustinov
Kaliningrad Branch
Email: sazonov.sergey@gmail.com
Russian Federation, Kaliningrad, 236039
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