4.7 Article

Multistability and dynamic behavior of non-linear wave solutions for analytical kink periodic and quasi-periodic wave structures in plasma physics

Journal

RESULTS IN PHYSICS
Volume 29, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.rinp.2021.104735

Keywords

Soliton solutions; Regularized long wave equation; Non-linear wave solutions; Bifurcation behavior

Funding

  1. Polish National Science Centre, Poland [2019/35/B/ST8/00980]

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This study measures the multistability and dynamic behavior of non-linear wave solutions of the unperturbed and perturbed FitzHugh-Nagumo (FHN) equation using analytical and numerical methods. Various solitonic structures are calculated for the unperturbed model, and bifurcation behavior is reported after transforming the model into a dynamic system with the Galilean transformation. Sensitivity analysis is used to analyze periodic and quasi-periodic behavior under different initial values.
Multistability and dynamic behavior of non-linear wave solutions of unperturbed and perturbed with FitzHugh-Nagumo (FHN) equation is measured using analytical and numerical methods. For unperturbed model a variety of solitonic structures are calculated using a direct algebraic method. Thereafter, the examine model is transformed into a dynamic system with the help of the Galilean transformation and a bifurcation behavior is reported. To choose various particular values of the parameters, we determine single soliton, kinky periodic, bell type waves. In particular, we find both kink waves and the bright and dark bell type from solutions and interactions between waves at different times and solitons. In this work, the dynamics of the low-level model, which controls the interaction between the operator associated with a non-linear wave solution and the multi-stability due to periodic and quasi-periodic deviations, are investigated. Different kinds of cyclic firing diagram emanate abruptly saddle node bifurcations. The parameter territory in which different periodic solutions is also found. In addition, sensitivity analysis is used for a variety of initial values to analyze periodic and quasi-periodic behavior.

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