Solitons, multi-solitons and multi-periodic solutions of the generalized Lax equation by Darboux transformation and its quasiperiodic motions

IF 2.6 4区 物理与天体物理 Q2 PHYSICS, APPLIED
Nanda Kanan Pal, Prasanta Chatterjee, A. Saha
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引用次数: 0

Abstract

Using the Darboux transformation method, the general Lax equation is solved and a collection of new exact solutions together with one-soliton solutions, singular one-soliton solutions, periodic solutions, singular periodic solution, two-soliton solutions, singular two-soliton solutions, two-periodic solutions and singular two-periodic solutions is obtained. Using traveling wave transformation, the Lax equation is transfigured to a conservative dynamical system (CDS) of dimension four with three equilibrium points involving two parameters [Formula: see text] and v. The CDS has various quasi-periodic motions for fixed values of the parameters [Formula: see text] and v at different initial conditions. Furthermore, effects of the parameters [Formula: see text] and v are shown on the quasiperiodic motions of the CDS by means of phase sections and time series plots. This approach can be applied to a heterogeneity of nonlinear model equations or partial differential equations for describing their inherent nonlinear phenomena.
达尔布克斯变换的广义拉克斯方程的孤子、多孤子和多周期解及其准周期运动
利用达尔布变换方法求解了一般拉克斯方程,并得到了一系列新的精确解,包括单孑子解、奇异单孑子解、周期解、奇异周期解、双孑子解、奇异双孑子解、双周期解和奇异双周期解。利用行波变换,拉克斯方程被转换为一个四维保守动力系统(CDS),该系统有三个平衡点,涉及两个参数[公式:见正文]和 v。在不同的初始条件下,当参数[公式:见正文]和 v 的值固定时,CDS 有各种准周期运动。此外,还通过相位剖面图和时间序列图显示了参数[公式:见正文]和 v 对 CDS 准周期运动的影响。这种方法可应用于各种非线性模型方程或偏微分方程,以描述其内在的非线性现象。
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来源期刊
International Journal of Modern Physics B
International Journal of Modern Physics B 物理-物理:凝聚态物理
CiteScore
3.70
自引率
11.80%
发文量
417
审稿时长
3.1 months
期刊介绍: Launched in 1987, the International Journal of Modern Physics B covers the most important aspects and the latest developments in Condensed Matter Physics, Statistical Physics, as well as Atomic, Molecular and Optical Physics. A strong emphasis is placed on topics of current interest, such as cold atoms and molecules, new topological materials and phases, and novel low dimensional materials. One unique feature of this journal is its review section which contains articles with permanent research value besides the state-of-the-art research work in the relevant subject areas.
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