1. Complex dynamical behaviors of compact solitary waves in the perturbed mKdV equation
- Author
-
Qianqian Xing, Li-Xin Tian, and Jiu-Li Yin
- Subjects
Physics ,Phase portrait ,Weak solution ,Mathematical analysis ,Chaotic ,General Physics and Astronomy ,Lyapunov exponent ,Nonlinear Sciences::Chaotic Dynamics ,symbols.namesake ,Periodic perturbation ,Control theory ,symbols ,Focus (optics) ,Nonlinear Sciences::Pattern Formation and Solitons ,Bifurcation - Abstract
In this paper, we give a detailed discussion about the dynamical behaviors of compact solitary waves subjected to the periodic perturbation. By using the phase portrait theory, we find one of the nonsmooth solitary waves of the mKdV equation, namely, a compact solitary wave, to be a weak solution, which can be proved. It is shown that the compact solitary wave easily turns chaotic from the Melnikov theory. We focus on the sufficient conditions by keeping the system stable through selecting a suitable controller. Furthermore, we discuss the chaotic threshold for a perturbed system. Numerical simulations including chaotic thresholds, bifurcation diagrams, the maximum Lyapunov exponents, and phase portraits demonstrate that there exists a special frequency which has a great influence on our system; with the increase of the controller strength, chaos disappears in the perturbed system. But if the controller strength is sufficiently large, the solitary wave vibrates violently.
- Published
- 2014