(2+1)维双曲型非线性薛定谔方程的调制不稳定性分析、光学孤子和其他解

IF 1.1 Q2 MATHEMATICS, APPLIED Computational Methods for Differential Equations Pub Date : 2021-01-05 DOI:10.22034/CMDE.2020.38990.1711
T. Sulaiman, U. Younas, M. Younis, J. Ahmad, S. Rehman, M. Bilal, A. Yusuf
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引用次数: 16

摘要

目前的研究利用扩展的sinh-Gordon方程展开和($frac{G^{prime}}{G^2}$)展开函数方法来构造(2+1)维双曲非线性Schr${ddoto}$dinger方程的各种光孤子和其他解,该方程描述了水动力学中深水中慢调制波列的水波表面高程。我们获得了不同类型的解决方案,如光学暗、亮、奇异、组合孤子以及双曲和三角函数解决方案。此外,还恢复了奇异周期波解,并报道了为孤立子解提供保证的约束条件。为了进一步阐明这些新的解决方案,已经描述了具有一些适当参数值选择的图形特征3D、2D和轮廓。借助调制不稳定性分析,我们还讨论了所研究的非线性模型的稳定性分析。
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Modulation instability analysis, optical solitons and other solutions to the (2+1)-dimensional hyperbolic nonlinear Schrodinger's equation
The current study utilizes the extended sinh-Gordon equation expansion and ($frac{G^{prime}}{G^2}$)-expansion function methods in constructing various optical soliton and other solutions to the (2+1)-dimensional hyperbolic nonlinear Schr${ddot o}$dinger's equation which describes the elevation of water wave surface for slowly modulated wave trains in deep water in hydrodynamics. We secure different kinds of solutions like optical dark, bright, singular, combo solitons as well as hyperbolic and trigonometric functions solutions. Moreover, singular periodic wave solutions are recovered and the constraint conditions which provide the guarantee to the soliton solutions are also reported. In order to shed more light on these novel solutions, graphical features 3D, 2D and contour with some suitable choice of parameter values have been depicted. We also discuss the stability analysis of the studied nonlinear model with aid of modulation instability analysis.
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来源期刊
CiteScore
2.20
自引率
27.30%
发文量
0
审稿时长
4 weeks
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