Solitons and other nonlinear waves for stochastic Schrödinger‐Hirota model using improved modified extended tanh‐function approach

Author:

Shehab Mohammed F.1,El‐Sheikh Mohamed M. A.2,Ahmed Hamdy M.1ORCID,Mabrouk Amina A. G.2,Mirzazadeh M.3ORCID,Hashemi M. S.45ORCID

Affiliation:

1. Department of Mathematics and Engineering Physics Higher Institute of Engineering, El‐Shorouk Academy El‐Shorouk Egypt

2. Department of Mathematics, Faculty of Science Menufia University Shebeen El‐Koom Egypt

3. Department of Engineering Sciences, Faculty of Technology and Engineering, East of Guilan University of Guilan Rudsar‐Vajargah Iran

4. Department of Mathematics, Basic Science Faculty University of Bonab Bonab Iran

5. Department of Computer Engineering Biruni University Istanbul Turkey

Abstract

The improved modified extended tanh‐function approach was used to study optical stochastic soliton solutions and other exact stochastic solutions for the nonlinear Schrödinger‐Hirota equation with multiplicative white noise. The derived solutions include stochastic bright solitons, stochastic singular solitons, stochastic periodic solutions, stochastic singular periodic solutions, stochastic exponential solutions, stochastic rational solutions, and stochastic Jacobi elliptic doubly periodic solutions. Constraints on the parameters were taken into account to ensure the existence of the obtained stochastic soliton solutions. Additionally, selected solutions were presented graphically to illustrate the physical characteristics of the stochastic solutions. In this paper, we used Mathematica (11.3) packages to find the coefficients and Matlab (R2015a) packages to plot the graphs.

Publisher

Wiley

Subject

General Engineering,General Mathematics

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