Optical Solitons in Magneto-Optic Waveguides Having Kudryashov’s Law of Nonlinear Refractive Index by Trial Equation Approach

The paper addresses optical solitons in magneto-optic waveguides that are studied using Kudryashov’s law of nonlinear refractive index in the presence of chromatic dispersion and Hamiltonian-type perturbation terms. The trial solution approach yielded a variety of soliton solutions, which are listed...

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Main Authors: Ming-Yue Wang, Anjan Biswas, Yakup Yıldırım, Luminita Moraru, Simona Moldovanu, Abdulah A. Alghamdi
Format: Article
Language:English
Published: MDPI AG 2023-01-01
Series:Electronics
Subjects:
Online Access:https://www.mdpi.com/2079-9292/12/2/331
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author Ming-Yue Wang
Anjan Biswas
Yakup Yıldırım
Luminita Moraru
Simona Moldovanu
Abdulah A. Alghamdi
author_facet Ming-Yue Wang
Anjan Biswas
Yakup Yıldırım
Luminita Moraru
Simona Moldovanu
Abdulah A. Alghamdi
author_sort Ming-Yue Wang
collection DOAJ
description The paper addresses optical solitons in magneto-optic waveguides that are studied using Kudryashov’s law of nonlinear refractive index in the presence of chromatic dispersion and Hamiltonian-type perturbation terms. The trial solution approach yielded a variety of soliton solutions, which are listed in this paper.
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spelling doaj.art-9c95c9922091481d994ebeb6d12f202c2023-11-30T21:58:59ZengMDPI AGElectronics2079-92922023-01-0112233110.3390/electronics12020331Optical Solitons in Magneto-Optic Waveguides Having Kudryashov’s Law of Nonlinear Refractive Index by Trial Equation ApproachMing-Yue Wang0Anjan Biswas1Yakup Yıldırım2Luminita Moraru3Simona Moldovanu4Abdulah A. Alghamdi5Department of Mathematics, Northeast Petroleum University, Daqing 163318, ChinaDepartment of Mathematics and Physics, Grambling State University, Grambling, LA 71245, USADepartment of Computer Engineering, Biruni University, 34010 Istanbul, TurkeyDepartment of Chemistry, Physics and Environment, Faculty of Sciences and Environment, Dunarea de Jos University of Galati, 47 Domneasca Street, 800008 Galati, RomaniaDepartment of Computer Science and Information Technology, Faculty of Automation, Computers, Electrical Engineering and Electronics, Dunarea de Jos University of Galati, 47 Domneasca Street, 800008 Galati, RomaniaMathematical Modeling and Applied Computation (MMAC) Research Group, Department of Mathematics, King Abdulaziz University, Jeddah 21589, Saudi ArabiaThe paper addresses optical solitons in magneto-optic waveguides that are studied using Kudryashov’s law of nonlinear refractive index in the presence of chromatic dispersion and Hamiltonian-type perturbation terms. The trial solution approach yielded a variety of soliton solutions, which are listed in this paper.https://www.mdpi.com/2079-9292/12/2/331solitonstrial equationKudryashov’s law
spellingShingle Ming-Yue Wang
Anjan Biswas
Yakup Yıldırım
Luminita Moraru
Simona Moldovanu
Abdulah A. Alghamdi
Optical Solitons in Magneto-Optic Waveguides Having Kudryashov’s Law of Nonlinear Refractive Index by Trial Equation Approach
Electronics
solitons
trial equation
Kudryashov’s law
title Optical Solitons in Magneto-Optic Waveguides Having Kudryashov’s Law of Nonlinear Refractive Index by Trial Equation Approach
title_full Optical Solitons in Magneto-Optic Waveguides Having Kudryashov’s Law of Nonlinear Refractive Index by Trial Equation Approach
title_fullStr Optical Solitons in Magneto-Optic Waveguides Having Kudryashov’s Law of Nonlinear Refractive Index by Trial Equation Approach
title_full_unstemmed Optical Solitons in Magneto-Optic Waveguides Having Kudryashov’s Law of Nonlinear Refractive Index by Trial Equation Approach
title_short Optical Solitons in Magneto-Optic Waveguides Having Kudryashov’s Law of Nonlinear Refractive Index by Trial Equation Approach
title_sort optical solitons in magneto optic waveguides having kudryashov s law of nonlinear refractive index by trial equation approach
topic solitons
trial equation
Kudryashov’s law
url https://www.mdpi.com/2079-9292/12/2/331
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