Some New Soliton Solutions of Time Fractional Resonant Davey–Stewartson Equations

IF 1.2 Q3 MATHEMATICS, APPLIED Computational and Mathematical Methods Pub Date : 2025-03-17 DOI:10.1155/cmm4/5529397
Esin İlhan, Muhammed Yiğider, Ercan Çelik, Hasan Bulut
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Abstract

In this study, the Bernoulli subequation method (BS-EM) is applied to investigate the traveling wave solutions of the (2 + 1)-dimensional resonant Davey–Stewartson system. By employing a wave transformation, the system’s nonlinear partial differential equation is reduced to a nonlinear ordinary differential equation, which is then solved using the BS-EM approach. As a result, several new traveling wave solutions, which have not been previously reported in the literature, have been successfully obtained. These solutions provide new insights into the physical dynamics of the system and also satisfy the (2 + 1)-dimensional time–fractional resonant Davey–Stewartson equation. Furthermore, the analytical and graphical analyses of the obtained solutions have been carried out, and the wave profiles have been examined under various parameter conditions. All computations and graphical visualizations in this study were performed using the Wolfram Mathematica 12 software.

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时间分数阶共振Davey-Stewartson方程的一些新的孤子解
本文采用伯努利子方程法(BS-EM)研究了(2 + 1)维谐振Davey-Stewartson系统的行波解。通过波变换,将系统的非线性偏微分方程化为非线性常微分方程,然后利用BS-EM方法求解。结果,成功地获得了一些以前文献中未报道的新的行波解。这些解决方案为系统的物理动力学提供了新的见解,并且还满足(2 + 1)维时间分数共振Davey-Stewartson方程。此外,还对得到的解进行了解析和图解分析,并对不同参数条件下的波浪剖面进行了检验。本研究的所有计算和图形可视化均使用Wolfram Mathematica 12软件进行。
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