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Sasa-Satsuma’s Dynamical Equation and Optical Solitary Wave Solutions

Sasa-Satsuma’s Dynamical Equation and Optical Solitary Wave Solutions
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摘要 This work proposes the construction of a prototype of pulse-kink hybrid solitary waves with a strong Kink dosage of the Sasa-Satsuma equation which describes the dynamics of the wave propagating in an optical fiber where the stimulated Raman scattering effect is bethinking during modeling. The ultimate goal of this work is to propose a plateful of solutions likely to serve as signals during studies on computer or laboratory propagation studies. The resolution of such an equation is not always the easiest thing, and we used the Bogning-Djeumen Tchaho-Kofané method extended to the implicit functions of Bogning to obtain the results. The flexibility of the iB-functions made it possible to deduce the trigonometric solutions, from the obtained solitary wave solutions with a hyperbolic analytical sequence of the studied Sasa-Satsuma equation. A better appreciation of the nature of the solutions obtained is made through the profiles of some solutions obtained during the different analyses. This work proposes the construction of a prototype of pulse-kink hybrid solitary waves with a strong Kink dosage of the Sasa-Satsuma equation which describes the dynamics of the wave propagating in an optical fiber where the stimulated Raman scattering effect is bethinking during modeling. The ultimate goal of this work is to propose a plateful of solutions likely to serve as signals during studies on computer or laboratory propagation studies. The resolution of such an equation is not always the easiest thing, and we used the Bogning-Djeumen Tchaho-Kofané method extended to the implicit functions of Bogning to obtain the results. The flexibility of the iB-functions made it possible to deduce the trigonometric solutions, from the obtained solitary wave solutions with a hyperbolic analytical sequence of the studied Sasa-Satsuma equation. A better appreciation of the nature of the solutions obtained is made through the profiles of some solutions obtained during the different analyses.
作者 Clovis Taki Djeumen Tchaho Jean Pierre Ngantcha Hugues Martial Omanda Bruno Rodin Mbock Um Thierry Blanchard Ekogo Jean Roger Bogning Clovis Taki Djeumen Tchaho;Jean Pierre Ngantcha;Hugues Martial Omanda;Bruno Rodin Mbock Um;Thierry Blanchard Ekogo;Jean Roger Bogning(African Centre for Advanced Studies, Yaoundé, Cameroon;Lycée Technique Fulbert Bongotha, Moanda, Gabon;Laboratoire de Mécanique des Matériaux, Ecole Polytechnique, Université des Sciences et Techniques de Masuku, Franceville, Gabon;Laboratoire Pluridisciplinaire des Sciences, Ecole Normale Supérieure, Libreville, Gabon;Département de Physique, Université des Sciences et Techniques de Masuku, Franceville, Gabon;Institut International de Recherches Biomédicales et de Biotechnologies Carl Kambangoye (IRBK), Université Internationale de Libreville (UIL), Libreville, Gabon;Department of Physics, Higher Teacher Training College, University of Bamenda, Bamenda, Cameroon)
出处 《Optics and Photonics Journal》 2022年第5期128-145,共18页 光学与光子学期刊(英文)
关键词 Sasa-Satsuma’s Dynamical Equation Bogning-Djeumen Tchaho-Kofané Method Optical Soliton iB-Functions Stimulated Raman Scattering Sasa-Satsuma’s Dynamical Equation Bogning-Djeumen Tchaho-Kofané Method Optical Soliton iB-Functions Stimulated Raman Scattering
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