Exploring the new optical solitons to the time-fractional integrable generalized (2+1)-dimensional nonlinear Schrödinger system via three different methods

Author:

Zhu Wen-Hui1,Raheel M.2,Liu Jian-Guo3

Affiliation:

1. Institute of Artificial Intelligence, Nanchang Institute of Science and Technology , Jiangxi 330108 , China

2. Department of Mathematics & Statistics, Institute of Southern Punjab , Multan , Pakistan

3. College of Computer, Jiangxi University of Chinese Medicine , Jiangxi 330004 , China

Abstract

Abstract This current research is about some new optical solitons to the time-fractional integrable generalized (2+1)-dimensional nonlinear Schrödinger (NLS) system with novel truncated M-fractional derivative. The obtained results may be used in the description of the model in fruitful way. The novel derivative operator is applied to study the aforementioned model. The achieved results are in the form of dark, bright, and combo optical solitons. The achieved solutions are also verified by using the MATHEMATICA software. The obtained solutions are explained with different plots. Modified integration methods, Exp a {{\rm{Exp}}}_{a} function, extended ( G G ) \left(G^{\prime} /G) -expansion, and extended sinh-Gordon equation expansion method are applied to achieve the results. These exact solitons suggest that these methods are effective, straight forward, and reliable compared to other methods.

Publisher

Walter de Gruyter GmbH

Subject

General Physics and Astronomy

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