Analytical resolution of nonlinear fractional equations using the GERDFM method: Application to nonlinear Schrödinger and truncated Boussinesq-Burgers equations
Keywords:
Numerical modeling, GERDFM, Caputo derivative, Nonlinear Schrodinger equation, Fractional Runge-Kutta method 4Abstract
In this paper we develop the Generalized Exponential Rational Differential Function Method (GERDFM) for analytically solving complex nonlinear fractional partial differential equations, with application to the fractional nonlinear Schr¨odinger equation (NLSE) and the M-fractional truncated Boussinesq-Burgers equation. Our approach transforms these PDEs into adapted ordinary differential equations (ODEs), generating exact solutions for various nonlinear laws (Kerr, power, double power, parabolic) while explicitly incorporating the fractional Caputo derivatives of order M ? [0, 1]. The solitonic profiles obtained, illustrated by 2D/3D visualizations, reveal the crucial impact of non-linearity and fractional order on their dynamics, particularly in long memory optical systems and viscoelastic media. A rigorous numerical validation combining a fractional Runge-Kutta method and an L1 scheme confirms the superiority of our solutions, with a relative error < 10?8 (error < 2% near the solitonic peak) and a reduced computation time compared to conventional methods (Tanh-Coth, Sine-Cosine). These results open up concrete prospects for controlling solitons in anomalous dispersion optical fibers and modelling extreme waves in coastal hydrodynamics, while suggesting promising extensions to coupled and stochastic systems in nonlinear optics, fluid dynamics and plasma physics. This work provides significant advances in modeling wave propagation in complex media with memory effects. The GERDFM method’s ability to handle diverse nonlinearities while maintaining computational efficiency makes it particularly valuable for designing optical communication systems and predicting extreme wave phenomena in coastal engineering. Our analytical framework bridges a critical gap between classical soliton theory and fractional calculus applications.
Published
How to Cite
Issue
Section
Copyright (c) 2025 Rachid El chaal, Hamid Dalhi, Otmane Darbal, Omar Boughaleb (Author)

This work is licensed under a Creative Commons Attribution 4.0 International License.
How to Cite
Similar Articles
- David Opeoluwa Oyewola, Emmanuel Gbenga Dada, Juliana Ngozi ndunagu, Terrang Abubakar Umar, Akinwunmi S.A, COVID-19 Risk Factors, Economic Factors, and Epidemiological Factors nexus on Economic Impact: Machine Learning and Structural Equation Modelling Approaches , Journal of the Nigerian Society of Physical Sciences: Volume 3, Issue 4, November 2021
- C. A. Onate, M. O. Oluwayemi, I. B. Okon, Dirac Equation for Energy-Dependent Potential With Energy-dependent Tensor Interaction , Journal of the Nigerian Society of Physical Sciences: Volume 5, Issue 1, February 2023
- Diva Marchandra Mulansari, Maulana Malik, Sindy Devila, Ibrahim Mohammed Sulaiman, Dian Lestari, Fevi Novkaniza, Fida Fathiyah Addini, A hybrid IFR-IDY conjugate gradient algorithm for unconstrained optimization and its application in portfolio selection , Journal of the Nigerian Society of Physical Sciences: Volume 8, Issue 1, February 2026
- K. Lekhana, K. T. Shivaram, Applications of quadrilateral finite element meshes with four-node, eight-node, and twelve-node for efficient microwave energy transfer in curved waveguides , Journal of the Nigerian Society of Physical Sciences: Volume 8, Issue 3, August 2026
- K. T. Shivaram, A. M. Yogitha, S. M. Rajesh, N. Mahesh Kumar, Numerical computation of cut off wave number in polygonal wave guide by eight node finite element mesh generation approach , Journal of the Nigerian Society of Physical Sciences: Volume 6, Issue 4, November 2024
- Suraj Sharma, Ravinder Kumar, Analysis of love-type surface waves in an isotropic thermoelastic layer over a non-homogeneous elastic half-space with interface irregularity , Journal of the Nigerian Society of Physical Sciences: Volume 8, Issue 2, May 2026
- Ghada A. Ahmed, Fractional-order modeling of visceral leishmaniasis disease transmission dynamics : strategies in eastern Sudan , Journal of the Nigerian Society of Physical Sciences: Volume 5, Issue 4, November 2023
- Ibrahim Adamu Mohammed, Majid Khan Majahar Ali, Sani Rabiu, Raja Aqib Shamim, Shahida Shahnawaz, Development and validation of hybrid drying kinetics models with finite element method integration for black paper in a v-groove solar dryer , Journal of the Nigerian Society of Physical Sciences: Volume 7, Issue 4, November 2025
- C. A. Onate, I. B. Okon, M. C. Onyeaju, A. D. Antia, Approximate Solutions of the Schrodinger Equation for a Momentum-Dependent potential , Journal of the Nigerian Society of Physical Sciences: Volume 4, Issue 2, May 2022
- Adebola Samuel Adeoye, Ezekiel Olaoluwa Omole, Sule Adekunle Jimoh, Victoria Iyadunni Ayodele, Taiwo Aanu Ogunlusi, A comprehensive investigation of dual-damped Euler-Bernoulli beam under moving mass on Pasternak foundation via spectral and central difference methods , Journal of the Nigerian Society of Physical Sciences: Volume 8, Issue 2, May 2026
You may also start an advanced similarity search for this article.
Most read articles by the same author(s)
- R. El chaal, M. O. Aboutafail, Statistical Modelling by Topological Maps of Kohonen for Classification of the Physicochemical Quality of Surface Waters of the Inaouen Watershed Under Matlab , Journal of the Nigerian Society of Physical Sciences: Volume 4, Issue 2, May 2022

