Soliton outcomes and dynamical properties of the fractional Phi-4 equation

This paper uses the unified solver process to acquire soliton outcomes for the fractional Phi-4 model. The dynamic characteristic of the governing model is investigated for its planar dynamical system by applying the bifurcation method. Under the given parameters, 2D and 3D phase portraits, time ser...

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Main Authors: Md Mostafa, Mohammad Safi Ullah
Format: Article
Language:English
Published: AIP Publishing LLC 2025-01-01
Series:AIP Advances
Online Access:http://dx.doi.org/10.1063/5.0245261
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author Md Mostafa
Mohammad Safi Ullah
author_facet Md Mostafa
Mohammad Safi Ullah
author_sort Md Mostafa
collection DOAJ
description This paper uses the unified solver process to acquire soliton outcomes for the fractional Phi-4 model. The dynamic characteristic of the governing model is investigated for its planar dynamical system by applying the bifurcation method. Under the given parameters, 2D and 3D phase portraits, time series, return map, Lyapunov exponent, recurrence plot, strange attractor, bifurcation diagram, and fractal dimension plot are provided. These plots show the periodic, quasi-periodic, and chaotic nature of the suggested nonlinear problem. Moreover, the sensitivity and multistability assessments of the stated model are studied for a clear understanding of chaotic behavior. To understand the system’s long-term behavior, we also test the stability of our results. Our results agree with previous results and may help researchers better understand the behavior of nonlinear systems. Furthermore, other fields such as biology, economics, and engineering can apply our results.
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institution Kabale University
issn 2158-3226
language English
publishDate 2025-01-01
publisher AIP Publishing LLC
record_format Article
series AIP Advances
spelling doaj-art-d359b1a00af84ebfb8c66035b1d29bf22025-02-03T16:40:42ZengAIP Publishing LLCAIP Advances2158-32262025-01-01151015105015105-1010.1063/5.0245261Soliton outcomes and dynamical properties of the fractional Phi-4 equationMd Mostafa0Mohammad Safi Ullah1Department of Mathematics, Comilla University, Cumilla 3506, BangladeshDepartment of Mathematics, Comilla University, Cumilla 3506, BangladeshThis paper uses the unified solver process to acquire soliton outcomes for the fractional Phi-4 model. The dynamic characteristic of the governing model is investigated for its planar dynamical system by applying the bifurcation method. Under the given parameters, 2D and 3D phase portraits, time series, return map, Lyapunov exponent, recurrence plot, strange attractor, bifurcation diagram, and fractal dimension plot are provided. These plots show the periodic, quasi-periodic, and chaotic nature of the suggested nonlinear problem. Moreover, the sensitivity and multistability assessments of the stated model are studied for a clear understanding of chaotic behavior. To understand the system’s long-term behavior, we also test the stability of our results. Our results agree with previous results and may help researchers better understand the behavior of nonlinear systems. Furthermore, other fields such as biology, economics, and engineering can apply our results.http://dx.doi.org/10.1063/5.0245261
spellingShingle Md Mostafa
Mohammad Safi Ullah
Soliton outcomes and dynamical properties of the fractional Phi-4 equation
AIP Advances
title Soliton outcomes and dynamical properties of the fractional Phi-4 equation
title_full Soliton outcomes and dynamical properties of the fractional Phi-4 equation
title_fullStr Soliton outcomes and dynamical properties of the fractional Phi-4 equation
title_full_unstemmed Soliton outcomes and dynamical properties of the fractional Phi-4 equation
title_short Soliton outcomes and dynamical properties of the fractional Phi-4 equation
title_sort soliton outcomes and dynamical properties of the fractional phi 4 equation
url http://dx.doi.org/10.1063/5.0245261
work_keys_str_mv AT mdmostafa solitonoutcomesanddynamicalpropertiesofthefractionalphi4equation
AT mohammadsafiullah solitonoutcomesanddynamicalpropertiesofthefractionalphi4equation