New solition wave structure and modulation instability analysis for nonlinear Schrödinger equation with cubic, quintic, septic, and nonic nonlinearities

Khalifa, Abeer S.; Ahmed, Hamdy M.; Badra, Niveen; Rabie, Wafaa B.; Al-Askar, Farah M.; Mohammed, Wael W.;

Abstract


We have introduced various novel soliton waves and other analytic wave solutions for nonlinear Schrödinger equation with cubic, quintic, septic, and nonic nonlinearities. The modified extended direct algebraic method governs the transmission of various solitons with different effects. The combination of this system enables the obtaining of analytical soliton solutions with some unique behaviors, including bright, dark, and mixed dark-bright soliton solutions; singular soliton solutions; singular periodic, exponential, rational wave solutions; and Jacobi elliptic function solutions. These results realize the stability of the nonlinear waves’ propagation in a high-nonlinear-dispersion medium that is illustrated using 2D and 3D visuals and contour graphical diagrams of the output solutions. This research focused on determining exact soliton solutions under certain parameter conditions and evaluating the stability and reliability of the soliton solutions based on the used modified extended direct algebraic method. This will be useful for many various domains in technology and physics, such as biology, optics, and plasma physical science. At the end, we use modulation instability analysis to assess the stability of the wave solutions obtained.


Other data

Title New solition wave structure and modulation instability analysis for nonlinear Schrödinger equation with cubic, quintic, septic, and nonic nonlinearities
Authors Khalifa, Abeer S.; Ahmed, Hamdy M.; Badra, Niveen ; Rabie, Wafaa B.; Al-Askar, Farah M.; Mohammed, Wael W.
Keywords modified extended direct algebraic method | modulation instability | nonlinear Schrödinger equation | solitons
Issue Date 1-Jan-2024
Journal Aims Mathematics 
ISSN 2473-6988
DOI 10.3934/math.20241278
Scopus ID 2-s2.0-85203708334

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