Analyzing chaos and superposition of lump waves with other waves in the time-fractional coupled nonlinear schördinger equation

Author:

Majid Sheikh ZainORCID,Asjad Muhammad Imran,Riaz Muhammad Bilal,Muhammad Taseer

Abstract

This article aims to study the time fractional coupled nonlinear Schrödinger equation, which explains the interaction between modes in nonlinear optics and Bose-Einstein condensation. The proposed generalized projective Riccati equation method and modified auxiliary equation method extract a more efficient and broad range of soliton solutions. These include novel solutions like a combined dark-lump wave soliton, multiple dark-lump wave soliton, two dark-kink solitons, flat kink-lump wave, multiple U-shaped with lump wave, combined bright-dark with high amplitude lump wave, bright-dark with lump wave and kink dark-periodic solitons are derived. The travelling wave patterns of the model are graphically presented with suitable parameters in 3D, density, contour and 2D surfaces, enhancing understanding of parameter impact. The proposed model’s dynamics were observed and presented as quasi-periodic chaotic, periodic systems and quasi-periodic. This analysis confirms the effectiveness and reliability of the method employed, demonstrating its applicability in discovering travelling wave solitons for a wide range of nonlinear evolution equations.

Publisher

Public Library of Science (PLoS)

Reference45 articles.

1. On a new Darboux transformation for the construction of exact solutions of the Schrodinger equation;D Levi;Inverse Problems,1988

2. New Painlevé Integrable (3 + 1)-Dimensional Combined pKP-BKP Equation: Lump and Multiple Soliton Solutions;AM Wazwaz;Chinese Physics Letters,2023

3. Abundant closed-form solutions of the (3 + 1)-dimensional Vakhnenko-Parkes equation describing the dynamics of various solitary waves in ocean engineering;S Kumar;Journal of Ocean Engineering and Science,2022

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