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Computer Research and Modeling, 2017, Volume 9, Issue 5, Pages 705–716
DOI: https://doi.org/10.20537/2076-7633-2017-9-5-705-716
(Mi crm93)
 

MATHEMATICAL MODELING AND NUMERICAL SIMULATION

Traveling waves in a parabolic problem with a rotation on the circle

Yu. A. Khazova

V. I. Vernadsky Crimean Federal University, Vernadskogo Prospekt 4, Simferopol, 295007, Russia
References:
Abstract: Optical systems with two-dimensional feedback demonstrate wide possibilities for studying the nucleation and development processes of dissipative structures. Feedback allows to influence the dynamics of the optical system by controlling the transformation of spatial variables performed by prisms, lenses, dynamic holograms and other devices. A nonlinear interferometer with a mirror image of a field in two-dimensional feedback is one of the simplest optical systems in which is realized the nonlocal nature of light fields.
A mathematical model of optical systems with two-dimensional feedback is a nonlinear parabolic equation with rotation transformation of a spatial variable and periodicity conditions on a circle. Such problems are investigated: bifurcation of the traveling wave type stationary structures, how the form of the solution changes as the diffusion coefficient decreases, dynamics of the solution's stability when the bifurcation parameter leaves the critical value. For the first time as a parameter bifurcation was taken of diffusion coefficient.
The method of central manifolds and the Galerkin's method are used in this paper. The method of central manifolds and the Galerkin's method are used in this paper. The method of central manifolds allows to prove a theorem on the existence and form of the traveling wave type solution neighborhood of the bifurcation value.The first traveling wave born as a result of the Andronov - Hopf bifurcation in the transition of the bifurcation parameter through the сritical value. According to the central manifold theorem, the first traveling wave is bornorbitally stable.
Since the above theorem gives the opportunity to explore solutions are born only in the vicinity of the critical values of the bifurcation parameter, the decision to study the dynamics of traveling waves of change during the withdrawal of the bifurcation parameter in the supercritical region, the formalism of the Galerkin method was used. In accordance with the method of the central manifold is made Galerkin's approximation of the problem solution. As the bifurcation parameter decreases and its transition through the critical value, the zero solution of the problem loses stability in an oscillatory manner. As a result, a periodic solution of the traveling wave type branches off from the zero solution. This wave is born orbitally stable. With further reduction of the parameter and its passage through the next critical value from the zero solution, the second solution of the traveling wave type is produced as a result of the Andronov - Hopf bifurcation. This wave is born unstable with an instability index of two.
Numerical calculations have shown that the application of the Galerkin's method leads to correct results. The results obtained are in good agreement with the results obtained by other authors and can be used to establish experiments on the study of phenomena in optical systems with feedback.
Keywords: parabolic problem, bifurcation, stability, traveling wave, method central manifolds, Galerkin’s method.
Funding agency Grant number
Программа развития федерального государственного автономного образовательного учреждения высшего образования «Крымский федеральный университет имени В. И. Вернадского» на 2015–2024 гг.
The research was carried out with the support of the Academic Mobility Network “Academic Mobility of Young Scientists of Russia” by V. I. Vernadsky Crimean Federal University on the basis by Sobolev Institute of Mathematics SB RAS, Laboratory of Differential and Difference Equations in 2016 year.
Received: 26.05.2017
Revised: 03.07.2017
Accepted: 04.08.2017
Document Type: Article
UDC: 517:957
Language: Russian
Citation: Yu. A. Khazova, “Traveling waves in a parabolic problem with a rotation on the circle”, Computer Research and Modeling, 9:5 (2017), 705–716
Citation in format AMSBIB
\Bibitem{Kha17}
\by Yu.~A.~Khazova
\paper Traveling waves in a parabolic problem with a rotation on the circle
\jour Computer Research and Modeling
\yr 2017
\vol 9
\issue 5
\pages 705--716
\mathnet{http://mi.mathnet.ru/crm93}
\crossref{https://doi.org/10.20537/2076-7633-2017-9-5-705-716}
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