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Dynamical Behavior of Solitons of the Perturbed Nonlinear Schrödinger Equation and Microtubules Through the Generalized Kudryashov Scheme

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Date

2022

Journal Title

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Volume Title

Publisher

Elsevier B.V.

Open Access Color

GOLD

Green Open Access

No

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No
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Top 1%
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Top 10%
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Top 1%

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Abstract

The perturbed nonlinear Schrödinger (NLS) equation and the nonlinear radial dislocations model in microtubules (MTs) are the underlying frameworks to simulate the dynamic features of solitons in optical fibers and the functional aspects of microtubule dynamics. The generalized Kudryashov method is used in this article to extract stable, generic, and wide-ranging soliton solutions, comprising hyperbolic, exponential, trigonometric, and some other functions, and retrieve diverse known soliton structures by balancing the effects of nonlinearity and dispersion. It is established by analysis and graphs that changing the included parameters changes the waveform behavior, which is largely controlled by nonlinearity and dispersion effects. The impact of the other parameters on the wave profile, such as wave speed, wavenumber, etc., has also been covered. The results obtained demonstrate the reliability, efficiency, and capability of the implemented technique to determine wide-spectral stable soliton solutions to nonlinear evolution equations emerging in various branches of scientific, technological, and engineering domains. © 2022 The Author(s)

Description

Keywords

Soliton Solutions, 3D Wave Envelopes, Kerr Law Nonlinearity, Nonlinear Evolution Equations, Soliton solutions, Kerr law nonlinearity, Physics, QC1-999, 3D wave envelopes, Nonlinear evolution equations

Fields of Science

0103 physical sciences, 01 natural sciences

Citation

Ali Akbar, M. ;...et.al. (2022). "Dynamical behavior of solitons of the perturbed nonlinear Schrödinger equation and microtubules through the generalized Kudryashov scheme", Results in Physics, Vol.43.

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Q1

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Q1
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OpenCitations Citation Count
54

Source

Results in Physics

Volume

43

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CrossRef : 58

Scopus : 97

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