Establishing breather and N-soliton solutions for conformable Klein–Gordon equation

Author:

Bilal Muhammad1,Iqbal Javed1,Ali Rashid2,Awwad Fuad A.3,Ismail Emad A. A.3

Affiliation:

1. Department of Mathematics, Abdul Wali Khan University , Mardan 23200 , Pakistan

2. School of Mathematical Sciences, Zhejiang Normal University , Jinhua 321004 , Zhejiang , P.R. China

3. Department of Quantitative Analysis, College of Business Administration, King Saud University , P.O. Box 71115 , Riyadh 11587 , Saudi Arabia

Abstract

Abstract This article develops and investigates the behavior of soliton solutions for the spatiotemporal conformable Klein–Gordon equation (CKGE), a well-known mathematical physics model that accounts for spinless pion and de-Broglie waves. To accomplish this task, we deploy an effective analytical method, namely, the modified extended direct algebraic method (mEDAM). This method first develops a nonlinear ordinary differential equation (NODE) through the use of a wave transformation. With the help of generalized Riccati NODE and balancing nonlinearity with the highest derivative term, it then assumes a finite series-form solution for the resulting NODE, from which four clusters of soliton solutions – generalized rational, trigonometric, exponential, and hyperbolic functions – are derived. Using contour and three-dimensional visuals, the behaviors of the soliton solutions – which are prominently described as dark kink, bright kink, breather, and other N N -soliton waves – are examined and analyzed. These results have applications in solid-state physics, nonlinear optics, quantum field theory, and a more thorough knowledge of the dynamics of the CKGE.

Publisher

Walter de Gruyter GmbH

Reference73 articles.

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