Dynamic Behaviors and Analytical Solutions of the Damped (2+1)-Dimensional Nonlinear Schrödinger Equation

In this paper, abundant analytical solutions of the damped (2 + 1)-dimensional nonlinear Schrödinger equation are achieved by taking advantage of the extended systematic method. By considering various values of parameters, dynamic behaviors of bright, dark soliton, period wave, and kink solitary sol...

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Main Authors: Yongyi Gu, Feng Ye, Baixin Chen, Najva Aminakbari
Format: Article
Language:English
Published: Wiley 2024-01-01
Series:Advances in Mathematical Physics
Online Access:http://dx.doi.org/10.1155/2024/6057483
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author Yongyi Gu
Feng Ye
Baixin Chen
Najva Aminakbari
author_facet Yongyi Gu
Feng Ye
Baixin Chen
Najva Aminakbari
author_sort Yongyi Gu
collection DOAJ
description In this paper, abundant analytical solutions of the damped (2 + 1)-dimensional nonlinear Schrödinger equation are achieved by taking advantage of the extended systematic method. By considering various values of parameters, dynamic behaviors of bright, dark soliton, period wave, and kink solitary solutions are displayed with different amplitudes and directions in 3D graphs, lines, contour maps, and time evolution plots. Further analysis of the obtained results is studied to show the efficient effect of the parameters on the propagation and configuration of waves. In addition, computer simulations are considered to show the correlation between parameters and velocity. Our results indicate that the extended systematic method for solving differential equations is more convenient and yields richer solutions. The other mathematical physics equations that appear in nonlinear science can also be investigated by the concept of this study.
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series Advances in Mathematical Physics
spelling doaj-art-15eadc1c46f0497b9efd4da2d7d9e4a32025-02-03T05:32:40ZengWileyAdvances in Mathematical Physics1687-91392024-01-01202410.1155/2024/6057483Dynamic Behaviors and Analytical Solutions of the Damped (2+1)-Dimensional Nonlinear Schrödinger EquationYongyi Gu0Feng Ye1Baixin Chen2Najva Aminakbari3School of Statistics and MathematicsDepartment of Basic Courses TeachingSchool of Statistics and MathematicsSchool of Mathematics and Information ScienceIn this paper, abundant analytical solutions of the damped (2 + 1)-dimensional nonlinear Schrödinger equation are achieved by taking advantage of the extended systematic method. By considering various values of parameters, dynamic behaviors of bright, dark soliton, period wave, and kink solitary solutions are displayed with different amplitudes and directions in 3D graphs, lines, contour maps, and time evolution plots. Further analysis of the obtained results is studied to show the efficient effect of the parameters on the propagation and configuration of waves. In addition, computer simulations are considered to show the correlation between parameters and velocity. Our results indicate that the extended systematic method for solving differential equations is more convenient and yields richer solutions. The other mathematical physics equations that appear in nonlinear science can also be investigated by the concept of this study.http://dx.doi.org/10.1155/2024/6057483
spellingShingle Yongyi Gu
Feng Ye
Baixin Chen
Najva Aminakbari
Dynamic Behaviors and Analytical Solutions of the Damped (2+1)-Dimensional Nonlinear Schrödinger Equation
Advances in Mathematical Physics
title Dynamic Behaviors and Analytical Solutions of the Damped (2+1)-Dimensional Nonlinear Schrödinger Equation
title_full Dynamic Behaviors and Analytical Solutions of the Damped (2+1)-Dimensional Nonlinear Schrödinger Equation
title_fullStr Dynamic Behaviors and Analytical Solutions of the Damped (2+1)-Dimensional Nonlinear Schrödinger Equation
title_full_unstemmed Dynamic Behaviors and Analytical Solutions of the Damped (2+1)-Dimensional Nonlinear Schrödinger Equation
title_short Dynamic Behaviors and Analytical Solutions of the Damped (2+1)-Dimensional Nonlinear Schrödinger Equation
title_sort dynamic behaviors and analytical solutions of the damped 2 1 dimensional nonlinear schrodinger equation
url http://dx.doi.org/10.1155/2024/6057483
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